From fd78486086d9f8657e602ae517f0a91615f4732f Mon Sep 17 00:00:00 2001
From: Richard Berger
Date: Sun, 5 Mar 2017 18:27:38 -0500
Subject: [PATCH 01/15] First batch of spelling fixes in manual
---
doc/src/2001/input_commands.html | 4 ++--
doc/src/99/basics.html | 2 +-
doc/src/99/input_commands.html | 2 +-
doc/src/Section_errors.txt | 32 ++++++++++++++---------------
doc/src/body.txt | 4 ++--
doc/src/compute_temp_asphere.txt | 2 +-
doc/src/compute_temp_body.txt | 2 +-
doc/src/dump_image.txt | 2 +-
doc/src/fix_deform.txt | 4 ++--
doc/src/fix_gle.txt | 2 +-
doc/src/fix_gravity.txt | 2 +-
doc/src/fix_nph_asphere.txt | 2 +-
doc/src/fix_nph_body.txt | 2 +-
doc/src/fix_npt_asphere.txt | 2 +-
doc/src/fix_npt_body.txt | 2 +-
doc/src/fix_nve_asphere.txt | 2 +-
doc/src/fix_nve_asphere_noforce.txt | 2 +-
doc/src/fix_nve_body.txt | 2 +-
doc/src/fix_nve_limit.txt | 4 ++--
doc/src/fix_nvt_asphere.txt | 2 +-
doc/src/fix_nvt_body.txt | 2 +-
doc/src/fix_orient.txt | 2 +-
doc/src/fix_qeq.txt | 4 ++--
doc/src/fix_qeq_reax.txt | 2 +-
doc/src/fix_rigid.txt | 8 ++++----
doc/src/fix_rx.txt | 2 +-
doc/src/fix_shake.txt | 2 +-
doc/src/fix_ttm.txt | 2 +-
doc/src/molecule.txt | 2 +-
doc/src/region.txt | 2 +-
30 files changed, 53 insertions(+), 53 deletions(-)
diff --git a/doc/src/2001/input_commands.html b/doc/src/2001/input_commands.html
index 6f7266f2ca..e37d01a0d4 100644
--- a/doc/src/2001/input_commands.html
+++ b/doc/src/2001/input_commands.html
@@ -476,7 +476,7 @@ IMPORTANT NOTE: the angletype option has one additional affect, namely
since they will not be SHAKEn but neither will the angle force by computed
for style region, a coeff of INF means + or - infinity (all the way
to the boundary)
-an atom can be assigned to multiple constraints, the contraints will be
+an atom can be assigned to multiple constraints, the constraints will be
applied in the reverse order they are assigned to that atom
(e.g. each timestep, the last fix assigned to an atom will be applied
to it first, then the next-to-last applied second, etc)
@@ -1263,7 +1263,7 @@ when using constraints with the minimizer, fixes are
applied when atoms move except for the following
fixes associated with temperature control are not allowed
(rescale, hoover/drag, langevin)
-the minimizer does not invoke the "fix style shake" contraints on
+the minimizer does not invoke the "fix style shake" constraints on
bond lengths
the minimizer does not invoke pressure control or volume control settings
for good convergence, should specify use of smooth nonbond force fields
diff --git a/doc/src/99/basics.html b/doc/src/99/basics.html
index a9a9cb4a8d..0276460723 100644
--- a/doc/src/99/basics.html
+++ b/doc/src/99/basics.html
@@ -167,7 +167,7 @@ tool on the small-system data file.
(6) flow
-2-d flow of Lennard-Jones atoms in a channel using various contraint
+2-d flow of Lennard-Jones atoms in a channel using various constraint
options.
(7) polymer
diff --git a/doc/src/99/input_commands.html b/doc/src/99/input_commands.html
index b904027153..1de02b1686 100644
--- a/doc/src/99/input_commands.html
+++ b/doc/src/99/input_commands.html
@@ -294,7 +294,7 @@ assign a group of atoms to a particular constraint
use appropriate number of coeffs for a particular style
the constraint itself is defined by the "fix style" command
multiple groups of atoms can be assigned to the same constraint
-an atom can be assigned to multiple constraints, the contraints will be
+an atom can be assigned to multiple constraints, the constraints will be
applied in the reverse order they are assigned to that atom
(e.g. each timestep, the last fix assigned to an atom will be applied
to it first, then the next-to-last applied second, etc)
diff --git a/doc/src/Section_errors.txt b/doc/src/Section_errors.txt
index f2ef986394..950ae77d19 100644
--- a/doc/src/Section_errors.txt
+++ b/doc/src/Section_errors.txt
@@ -574,11 +574,11 @@ group of atoms correctly. :dd
{Bad quadratic solve for particle/line collision} :dt
-This is an internal error. It should nornally not occur. :dd
+This is an internal error. It should normally not occur. :dd
{Bad quadratic solve for particle/tri collision} :dt
-This is an internal error. It should nornally not occur. :dd
+This is an internal error. It should normally not occur. :dd
{Bad real space Coulomb cutoff in fix tune/kspace} :dt
@@ -912,7 +912,7 @@ Atoms can not be added afterwards to this fix option. :dd
{Cannot append atoms to a triclinic box} :dt
-The simulation box must be defined with edges alligned with the
+The simulation box must be defined with edges aligned with the
Cartesian axes. :dd
{Cannot balance in z dimension for 2d simulation} :dt
@@ -1327,7 +1327,7 @@ Self-explanatory. :dd
This file is created when you use some LAMMPS features, to indicate
what paper you should cite on behalf of those who implemented
-the feature. Check that you have write priveleges into the directory
+the feature. Check that you have write privileges into the directory
you are running in. :dd
{Cannot open log.lammps for writing} :dt
@@ -2088,7 +2088,7 @@ Self-explanatory. :dd
{Cannot use lines with fix srd unless overlap is set} :dt
-This is because line segements are connected to each other. :dd
+This is because line segments are connected to each other. :dd
{Cannot use multiple fix wall commands with pair brownian} :dt
@@ -2790,7 +2790,7 @@ Self-explanatory. :dd
{Compute erotate/asphere requires extended particles} :dt
-This compute cannot be used with point paritlces. :dd
+This compute cannot be used with point particles. :dd
{Compute erotate/rigid with non-rigid fix-ID} :dt
@@ -3079,7 +3079,7 @@ Self-explanatory. :dd
{Compute temp/asphere requires extended particles} :dt
-This compute cannot be used with point paritlces. :dd
+This compute cannot be used with point particles. :dd
{Compute temp/body requires atom style body} :dt
@@ -3524,12 +3524,12 @@ path and name are correct. :dd
{Could not process Python file} :dt
-The Python code in the specified file was not run sucessfully by
+The Python code in the specified file was not run successfully by
Python, probably due to errors in the Python code. :dd
{Could not process Python string} :dt
-The Python code in the here string was not run sucessfully by Python,
+The Python code in the here string was not run successfully by Python,
probably due to errors in the Python code. :dd
{Coulomb PPPMDisp order has been reduced below minorder} :dt
@@ -4385,7 +4385,7 @@ Self-explanatory. :dd
{Fix ave/chunk does not use chunk/atom compute} :dt
-The specified conpute is not for a compute chunk/atom command. :dd
+The specified compute is not for a compute chunk/atom command. :dd
{Fix ave/chunk fix does not calculate a per-atom array} :dt
@@ -4970,7 +4970,7 @@ Self-explanatory. :dd
{Fix langevin angmom requires extended particles} :dt
-This fix option cannot be used with point paritlces. :dd
+This fix option cannot be used with point particles. :dd
{Fix langevin omega is not yet implemented with kokkos} :dt
@@ -7361,7 +7361,7 @@ This should not occur. Report the problem to the developers. :dd
Lost atoms are checked for each time thermo output is done. See the
thermo_modify lost command for options. Lost atoms usually indicate
bad dynamics, e.g. atoms have been blown far out of the simulation
-box, or moved futher than one processor's sub-domain away before
+box, or moved further than one processor's sub-domain away before
reneighboring. :dd
{MEAM library error %d} :dt
@@ -9166,7 +9166,7 @@ Self-explanatory. :dd
{Python function evaluation failed} :dt
-The Python function did not run succesfully and/or did not return a
+The Python function did not run successfully and/or did not return a
value (if it is supposed to return a value). This is probably due to
some error condition in the function. :dd
@@ -10654,7 +10654,7 @@ Only atom-style variables can be used. :dd
{Variable for region cylinder is invalid style} :dt
-Only equal-style varaibles are allowed. :dd
+Only equal-style variables are allowed. :dd
{Variable for region is invalid style} :dt
@@ -10666,7 +10666,7 @@ Self-explanatory. :dd
{Variable for region sphere is invalid style} :dt
-Only equal-style varaibles are allowed. :dd
+Only equal-style variables are allowed. :dd
{Variable for restart is invalid style} :dt
@@ -11414,7 +11414,7 @@ The command options you have used caused atoms to be lost. :dd
Lost atoms are checked for each time thermo output is done. See the
thermo_modify lost command for options. Lost atoms usually indicate
bad dynamics, e.g. atoms have been blown far out of the simulation
-box, or moved futher than one processor's sub-domain away before
+box, or moved further than one processor's sub-domain away before
reneighboring. :dd
{MSM mesh too small, increasing to 2 points in each direction} :dt
diff --git a/doc/src/body.txt b/doc/src/body.txt
index 0ea975539d..44bd815205 100644
--- a/doc/src/body.txt
+++ b/doc/src/body.txt
@@ -140,7 +140,7 @@ for more details.
The 6 moments of inertia (ixx,iyy,izz,ixy,ixz,iyz) should be the
values consistent with the current orientation of the rigid body
around its center of mass. The values are with respect to the
-simulation box XYZ axes, not with respect to the prinicpal axes of the
+simulation box XYZ axes, not with respect to the principal axes of the
rigid body itself. LAMMPS performs the latter calculation internally.
The coordinates of each sub-particle are specified as its x,y,z
displacement from the center-of-mass of the body particle. The
@@ -218,7 +218,7 @@ wish; see the "read_data"_read_data.html command for more details.
The 6 moments of inertia (ixx,iyy,izz,ixy,ixz,iyz) should be the
values consistent with the current orientation of the rigid body
around its center of mass. The values are with respect to the
-simulation box XYZ axes, not with respect to the prinicpal axes of the
+simulation box XYZ axes, not with respect to the principal axes of the
rigid body itself. LAMMPS performs the latter calculation internally.
The coordinates of each vertex are specified as its x,y,z displacement
from the center-of-mass of the body particle. The center-of-mass
diff --git a/doc/src/compute_temp_asphere.txt b/doc/src/compute_temp_asphere.txt
index 43e1588fa0..495366b345 100644
--- a/doc/src/compute_temp_asphere.txt
+++ b/doc/src/compute_temp_asphere.txt
@@ -138,7 +138,7 @@ This compute is part of the ASPHERE package. It is only enabled if
LAMMPS was built with that package. See the "Making
LAMMPS"_Section_start.html#start_3 section for more info.
-This compute requires that atoms store angular momementum and a
+This compute requires that atoms store angular momentum and a
quaternion as defined by the "atom_style ellipsoid"_atom_style.html
command.
diff --git a/doc/src/compute_temp_body.txt b/doc/src/compute_temp_body.txt
index 04b707bcce..f72b886cc4 100644
--- a/doc/src/compute_temp_body.txt
+++ b/doc/src/compute_temp_body.txt
@@ -120,7 +120,7 @@ This compute is part of the BODY package. It is only enabled if
LAMMPS was built with that package. See the "Making
LAMMPS"_Section_start.html#start_3 section for more info.
-This compute requires that atoms store angular momementum and a
+This compute requires that atoms store angular momentum and a
quaternion as defined by the "atom_style body"_atom_style.html
command.
diff --git a/doc/src/dump_image.txt b/doc/src/dump_image.txt
index f5085846df..819cdbd36c 100644
--- a/doc/src/dump_image.txt
+++ b/doc/src/dump_image.txt
@@ -638,7 +638,7 @@ pipe:: Input/output error :pre
which can be safely ignored. Other warnings
and errors have to be addressed according to the FFmpeg documentation.
One known issue is that certain movie file formats (e.g. MPEG level 1
-and 2 format streams) have video bandwith limits that can be crossed
+and 2 format streams) have video bandwidth limits that can be crossed
when rendering too large of image sizes. Typical warnings look like
this:
diff --git a/doc/src/fix_deform.txt b/doc/src/fix_deform.txt
index 1478d47df1..8c3a9fa499 100644
--- a/doc/src/fix_deform.txt
+++ b/doc/src/fix_deform.txt
@@ -580,10 +580,10 @@ This fix is not invoked during "energy minimization"_minimize.html.
[Restrictions:]
You cannot apply x, y, or z deformations to a dimension that is
-shrink-wrapped via the "boundary"_boundary.html comamnd.
+shrink-wrapped via the "boundary"_boundary.html command.
You cannot apply xy, yz, or xz deformations to a 2nd dimension (y in
-xy) that is shrink-wrapped via the "boundary"_boundary.html comamnd.
+xy) that is shrink-wrapped via the "boundary"_boundary.html command.
[Related commands:]
diff --git a/doc/src/fix_gle.txt b/doc/src/fix_gle.txt
index 79b5abe5b0..b6a1a7500a 100644
--- a/doc/src/fix_gle.txt
+++ b/doc/src/fix_gle.txt
@@ -62,7 +62,7 @@ as a (Ns+1 x Ns+1) matrix in inverse time units. Matrices that are
optimal for a given application and the system of choice can be
obtained from "(GLE4MD)"_#GLE4MD.
-Equilibrium sampling a temperature T is obtained by specifiying the
+Equilibrium sampling a temperature T is obtained by specifying the
target value as the {Tstart} and {Tstop} arguments, so that the diffusion
matrix that gives canonical sampling for a given A is computed automatically.
However, the GLE framework also allow for non-equilibrium sampling, that
diff --git a/doc/src/fix_gravity.txt b/doc/src/fix_gravity.txt
index 04b0fd091e..2cf1665c30 100644
--- a/doc/src/fix_gravity.txt
+++ b/doc/src/fix_gravity.txt
@@ -76,7 +76,7 @@ specified as an equal-style "variable"_variable.html. If the value is
a variable, it should be specified as v_name, where name is the
variable name. In this case, the variable will be evaluated each
timestep, and its value used to determine the quantity. You should
-insure that the variable calculates a result in the approriate units,
+insure that the variable calculates a result in the appropriate units,
e.g. force/mass or degrees.
Equal-style variables can specify formulas with various mathematical
diff --git a/doc/src/fix_nph_asphere.txt b/doc/src/fix_nph_asphere.txt
index 059498a843..3d151a724b 100644
--- a/doc/src/fix_nph_asphere.txt
+++ b/doc/src/fix_nph_asphere.txt
@@ -136,7 +136,7 @@ This fix is part of the ASPHERE package. It is only enabled if LAMMPS
was built with that package. See the "Making
LAMMPS"_Section_start.html#start_3 section for more info.
-This fix requires that atoms store torque and angular momementum and a
+This fix requires that atoms store torque and angular momentum and a
quaternion as defined by the "atom_style ellipsoid"_atom_style.html
command.
diff --git a/doc/src/fix_nph_body.txt b/doc/src/fix_nph_body.txt
index ad5ffd8026..3a273be595 100644
--- a/doc/src/fix_nph_body.txt
+++ b/doc/src/fix_nph_body.txt
@@ -135,7 +135,7 @@ This fix is part of the BODY package. It is only enabled if LAMMPS
was built with that package. See the "Making
LAMMPS"_Section_start.html#start_3 section for more info.
-This fix requires that atoms store torque and angular momementum and a
+This fix requires that atoms store torque and angular momentum and a
quaternion as defined by the "atom_style body"_atom_style.html
command.
diff --git a/doc/src/fix_npt_asphere.txt b/doc/src/fix_npt_asphere.txt
index 40cc7ed2b2..8fe98f1818 100644
--- a/doc/src/fix_npt_asphere.txt
+++ b/doc/src/fix_npt_asphere.txt
@@ -161,7 +161,7 @@ This fix is part of the ASPHERE package. It is only enabled if LAMMPS
was built with that package. See the "Making
LAMMPS"_Section_start.html#start_3 section for more info.
-This fix requires that atoms store torque and angular momementum and a
+This fix requires that atoms store torque and angular momentum and a
quaternion as defined by the "atom_style ellipsoid"_atom_style.html
command.
diff --git a/doc/src/fix_npt_body.txt b/doc/src/fix_npt_body.txt
index c098ae216b..772920df61 100644
--- a/doc/src/fix_npt_body.txt
+++ b/doc/src/fix_npt_body.txt
@@ -160,7 +160,7 @@ This fix is part of the BODY package. It is only enabled if LAMMPS
was built with that package. See the "Making
LAMMPS"_Section_start.html#start_3 section for more info.
-This fix requires that atoms store torque and angular momementum and a
+This fix requires that atoms store torque and angular momentum and a
quaternion as defined by the "atom_style body"_atom_style.html
command.
diff --git a/doc/src/fix_nve_asphere.txt b/doc/src/fix_nve_asphere.txt
index 817e6985c5..03846a2558 100644
--- a/doc/src/fix_nve_asphere.txt
+++ b/doc/src/fix_nve_asphere.txt
@@ -71,7 +71,7 @@ This fix is part of the ASPHERE package. It is only enabled if LAMMPS
was built with that package. See the "Making
LAMMPS"_Section_start.html#start_3 section for more info.
-This fix requires that atoms store torque and angular momementum and a
+This fix requires that atoms store torque and angular momentum and a
quaternion as defined by the "atom_style ellipsoid"_atom_style.html
command.
diff --git a/doc/src/fix_nve_asphere_noforce.txt b/doc/src/fix_nve_asphere_noforce.txt
index 8cc2ceb396..98cf75999b 100644
--- a/doc/src/fix_nve_asphere_noforce.txt
+++ b/doc/src/fix_nve_asphere_noforce.txt
@@ -49,7 +49,7 @@ This fix is part of the ASPHERE package. It is only enabled if LAMMPS
was built with that package. See the "Making
LAMMPS"_Section_start.html#start_3 section for more info.
-This fix requires that atoms store torque and angular momementum and a
+This fix requires that atoms store torque and angular momentum and a
quaternion as defined by the "atom_style ellipsoid"_atom_style.html
command.
diff --git a/doc/src/fix_nve_body.txt b/doc/src/fix_nve_body.txt
index 7709805abf..604b5391cd 100644
--- a/doc/src/fix_nve_body.txt
+++ b/doc/src/fix_nve_body.txt
@@ -47,7 +47,7 @@ This fix is part of the BODY package. It is only enabled if LAMMPS
was built with that package. See the "Making
LAMMPS"_Section_start.html#start_3 section for more info.
-This fix requires that atoms store torque and angular momementum and a
+This fix requires that atoms store torque and angular momentum and a
quaternion as defined by the "atom_style body"_atom_style.html
command.
diff --git a/doc/src/fix_nve_limit.txt b/doc/src/fix_nve_limit.txt
index 6a83d715d2..2ecec83e9c 100644
--- a/doc/src/fix_nve_limit.txt
+++ b/doc/src/fix_nve_limit.txt
@@ -48,8 +48,8 @@ unaltered, pressures computed by thermodynamic output will still be
very large for overlapped configurations.
NOTE: You should not use "fix shake"_fix_shake.html in conjunction
-with this fix. That is because fix shake applies contraint forces
-based on the predicted postitions of atoms after the next timestep.
+with this fix. That is because fix shake applies constraint forces
+based on the predicted positions of atoms after the next timestep.
It has no way of knowing the timestep may change due to this fix,
which will cause the constraint forces to be invalid. A better
strategy is to turn off fix shake when performing initial dynamics
diff --git a/doc/src/fix_nvt_asphere.txt b/doc/src/fix_nvt_asphere.txt
index 6256627724..77de1dea40 100644
--- a/doc/src/fix_nvt_asphere.txt
+++ b/doc/src/fix_nvt_asphere.txt
@@ -137,7 +137,7 @@ This fix is part of the ASPHERE package. It is only enabled if LAMMPS
was built with that package. See the "Making
LAMMPS"_Section_start.html#start_3 section for more info.
-This fix requires that atoms store torque and angular momementum and a
+This fix requires that atoms store torque and angular momentum and a
quaternion as defined by the "atom_style ellipsoid"_atom_style.html
command.
diff --git a/doc/src/fix_nvt_body.txt b/doc/src/fix_nvt_body.txt
index d12903acfd..1f04b85c8b 100644
--- a/doc/src/fix_nvt_body.txt
+++ b/doc/src/fix_nvt_body.txt
@@ -136,7 +136,7 @@ This fix is part of the BODY package. It is only enabled if LAMMPS
was built with that package. See the "Making
LAMMPS"_Section_start.html#start_3 section for more info.
-This fix requires that atoms store torque and angular momementum and a
+This fix requires that atoms store torque and angular momentum and a
quaternion as defined by the "atom_style body"_atom_style.html
command.
diff --git a/doc/src/fix_orient.txt b/doc/src/fix_orient.txt
index 8573d99508..20ff94866e 100644
--- a/doc/src/fix_orient.txt
+++ b/doc/src/fix_orient.txt
@@ -31,7 +31,7 @@ The fix applies an orientation-dependent force to atoms near a planar
grain boundary which can be used to induce grain boundary migration
(in the direction perpendicular to the grain boundary plane). The
motivation and explanation of this force and its application are
-described in "(Janssens)"_#Janssens. The adaptiation to bcc crystals
+described in "(Janssens)"_#Janssens. The adaptation to bcc crystals
is described in "(Wicaksono1)"_#Wicaksono1. The computed force is only
applied to atoms in the fix group.
diff --git a/doc/src/fix_qeq.txt b/doc/src/fix_qeq.txt
index e9769ed33b..951a82709e 100644
--- a/doc/src/fix_qeq.txt
+++ b/doc/src/fix_qeq.txt
@@ -81,7 +81,7 @@ are the same. Eventually the fix qeq/reax command will be deprecated.
The QEq method minimizes the electrostatic energy of the system (or
equalizes the derivative of energy with respect to charge of all the
atoms) by adjusting the partial charge on individual atoms based on
-interactions with their neighbors within {cutoff}. It reqires a few
+interactions with their neighbors within {cutoff}. It requires a few
parameters, in {metal} units, for each atom type which provided in a
file specified by {qfile}. The file has the following format
@@ -91,7 +91,7 @@ file specified by {qfile}. The file has the following format
Ntype chi eta gamma zeta qcore :pre
There is one line per atom type with the following parameters.
-Only a subset of the parameters is used by each QEq style as descibed
+Only a subset of the parameters is used by each QEq style as described
below, thus the others can be set to 0.0 if desired.
{chi} = electronegativity in energy units
diff --git a/doc/src/fix_qeq_reax.txt b/doc/src/fix_qeq_reax.txt
index d0266480a8..74f944db66 100644
--- a/doc/src/fix_qeq_reax.txt
+++ b/doc/src/fix_qeq_reax.txt
@@ -40,7 +40,7 @@ charge equilibration performed by fix qeq/reax, see the
The QEq method minimizes the electrostatic energy of the system by
adjusting the partial charge on individual atoms based on interactions
-with their neighbors. It reqires some parameters for each atom type.
+with their neighbors. It requires some parameters for each atom type.
If the {params} setting above is the word "reax/c", then these are
extracted from the "pair_style reax/c"_pair_reax_c.html command and
the ReaxFF force field file it reads in. If a file name is specified
diff --git a/doc/src/fix_rigid.txt b/doc/src/fix_rigid.txt
index a38948e560..54e9b16e6a 100644
--- a/doc/src/fix_rigid.txt
+++ b/doc/src/fix_rigid.txt
@@ -129,7 +129,7 @@ number of small rigid bodies. Each body is assigned to the atom
closest to the geometrical center of the body. The fix operates using
local lists of rigid bodies owned by each processor and information is
exchanged and summed via local communication between neighboring
-processors when ghost atom info is accumlated.
+processors when ghost atom info is accumulated.
NOTE: To use the {rigid/small} styles the ghost atom cutoff must be
large enough to span the distance between the atom that owns the body
@@ -262,7 +262,7 @@ and bond interactions within each rigid body, as they no longer
contribute to the motion. The "neigh_modify
exclude"_neigh_modify.html and "delete_bonds"_delete_bonds.html
commands are used to do this. If the rigid bodies have strongly
-overalapping atoms, you may need to turn off these interactions to
+overlapping atoms, you may need to turn off these interactions to
avoid numerical problems due to large equal/opposite intra-body forces
swamping the contribution of small inter-body forces.
@@ -530,7 +530,7 @@ back into the box.
The 6 moments of inertia (ixx,iyy,izz,ixy,ixz,iyz) should be the
values consistent with the current orientation of the rigid body
around its center of mass. The values are with respect to the
-simulation box XYZ axes, not with respect to the prinicpal axes of the
+simulation box XYZ axes, not with respect to the principal axes of the
rigid body itself. LAMMPS performs the latter calculation internally.
The (vxcm,vycm,vzcm) values are the velocity of the center of mass.
@@ -580,7 +580,7 @@ also accounted for by this fix.
:line
-If your simlulation is a hybrid model with a mixture of rigid bodies
+If your simulation is a hybrid model with a mixture of rigid bodies
and non-rigid particles (e.g. solvent) there are several ways these
rigid fixes can be used in tandem with "fix nve"_fix_nve.html, "fix
nvt"_fix_nh.html, "fix npt"_fix_nh.html, and "fix nph"_fix_nh.html.
diff --git a/doc/src/fix_rx.txt b/doc/src/fix_rx.txt
index c0deedfa63..5f29e34abe 100644
--- a/doc/src/fix_rx.txt
+++ b/doc/src/fix_rx.txt
@@ -63,7 +63,7 @@ control on the error. For error control, use the rkf45 ODE solver.
The rkf45 method adjusts the step-size so that the local truncation error is held
within the specified absolute and relative tolerances. The initial step-size {h0}
-can be specified by the user or estimated internally. It is recommeded that the user
+can be specified by the user or estimated internally. It is recommended that the user
specify {h0} since this will generally reduced the number of ODE integration steps
required. {h0} is defined as {dt / min_steps} if min_steps >= 1. If min_steps == 0,
{h0} is estimated such that an explicit Euler method would likely produce
diff --git a/doc/src/fix_shake.txt b/doc/src/fix_shake.txt
index 4f63556c52..335d3a78e9 100644
--- a/doc/src/fix_shake.txt
+++ b/doc/src/fix_shake.txt
@@ -47,7 +47,7 @@ enables a longer timestep.
[SHAKE vs RATTLE:]
The SHAKE algorithm was invented for schemes such as standard Verlet
-timesteppnig, where only the coordinates are integrated and the
+timestepping, where only the coordinates are integrated and the
velocities are approximated as finite differences to the trajectories
("Ryckaert et al. (1977)"_#Ryckaert). If the velocities are
integrated explicitly, as with velocity Verlet which is what LAMMPS
diff --git a/doc/src/fix_ttm.txt b/doc/src/fix_ttm.txt
index 2e7318da14..2ba84d4fa7 100644
--- a/doc/src/fix_ttm.txt
+++ b/doc/src/fix_ttm.txt
@@ -300,7 +300,7 @@ See the "Making LAMMPS"_Section_start.html#start_3 section for more
info.
These fixes can only be used for 3d simulations and orthogonal
-simlulation boxes. You must also use periodic
+simulation boxes. You must also use periodic
"boundary"_boundary.html conditions.
[Related commands:]
diff --git a/doc/src/molecule.txt b/doc/src/molecule.txt
index 9e738cee50..ecec62256a 100644
--- a/doc/src/molecule.txt
+++ b/doc/src/molecule.txt
@@ -155,7 +155,7 @@ The mass and center-of-mass coordinates (Xc,Yc,Zc) are
self-explanatory. The 6 moments of inertia (ixx,iyy,izz,ixy,ixz,iyz)
should be the values consistent with the current orientation of the
rigid body around its center of mass. The values are with respect to
-the simulation box XYZ axes, not with respect to the prinicpal axes of
+the simulation box XYZ axes, not with respect to the principal axes of
the rigid body itself. LAMMPS performs the latter calculation
internally.
diff --git a/doc/src/region.txt b/doc/src/region.txt
index 4ce230da7b..c4798a035b 100644
--- a/doc/src/region.txt
+++ b/doc/src/region.txt
@@ -285,7 +285,7 @@ region 2 sphere 10.0 10.0 0.0 5 move v_dx NULL NULL :pre
Note that the initial displacemet is 0.0, though that is not required.
-Either of these varaibles would "wiggle" the region back and forth in
+Either of these variables would "wiggle" the region back and forth in
the y direction:
variable dy equal swiggle(0,5,100)
From e261bef7bba710ac932881f28a0563f41cc028c4 Mon Sep 17 00:00:00 2001
From: Richard Berger
Date: Sun, 5 Mar 2017 18:30:39 -0500
Subject: [PATCH 02/15] Spelling fixes in source files
---
lib/atc/LinearSolver.cpp | 2 +-
python/README | 2 +-
src/ASPHERE/compute_erotate_asphere.h | 2 +-
src/ASPHERE/compute_temp_asphere.h | 2 +-
src/PYTHON/python.h | 6 +++---
src/SHOCK/fix_append_atoms.h | 2 +-
src/SRD/fix_srd.h | 6 +++---
src/angle.h | 2 +-
src/bond.h | 2 +-
src/citeme.h | 2 +-
src/dihedral.h | 2 +-
src/fix.h | 2 +-
src/fix_ave_chunk.h | 2 +-
src/fix_langevin.h | 2 +-
src/improper.h | 2 +-
src/kspace.h | 2 +-
src/procmap.cpp | 2 +-
src/region_cylinder.h | 2 +-
src/region_sphere.h | 2 +-
src/thermo.h | 4 ++--
tools/eff/cfg2lammps.py | 2 +-
tools/i-pi/ipi/engine/initializer.py | 4 ++--
22 files changed, 28 insertions(+), 28 deletions(-)
diff --git a/lib/atc/LinearSolver.cpp b/lib/atc/LinearSolver.cpp
index ea31a64a74..655d6130c4 100644
--- a/lib/atc/LinearSolver.cpp
+++ b/lib/atc/LinearSolver.cpp
@@ -65,7 +65,7 @@ LinearSolver::LinearSolver(
matrixModified_(false),
allowReinitialization_(false),
homogeneousBCs_(false),
- bcs_(NULL), // null implies no contraints will be added later
+ bcs_(NULL), // null implies no constraints will be added later
rhs_(NULL),
rhsDense_(), b_(NULL),
matrix_(A),
diff --git a/python/README b/python/README
index f0e95d3c45..86e599a404 100644
--- a/python/README
+++ b/python/README
@@ -23,7 +23,7 @@ of LAMMPS:
>>> from lammps import lammps
>>> lmp = lammps()
-If that gives no errors, you have succesfully wrapped LAMMPS with
+If that gives no errors, you have successfully wrapped LAMMPS with
Python. See doc/Section_python.html#py_7 for tests you can then use
to run LAMMPS both in serial or parallel thru Python.
diff --git a/src/ASPHERE/compute_erotate_asphere.h b/src/ASPHERE/compute_erotate_asphere.h
index be1c534923..23e30d7c93 100644
--- a/src/ASPHERE/compute_erotate_asphere.h
+++ b/src/ASPHERE/compute_erotate_asphere.h
@@ -56,6 +56,6 @@ Self-explanatory.
E: Compute erotate/asphere requires extended particles
-This compute cannot be used with point paritlces.
+This compute cannot be used with point particles.
*/
diff --git a/src/ASPHERE/compute_temp_asphere.h b/src/ASPHERE/compute_temp_asphere.h
index 4688a5612d..d1cce38025 100644
--- a/src/ASPHERE/compute_temp_asphere.h
+++ b/src/ASPHERE/compute_temp_asphere.h
@@ -65,7 +65,7 @@ Self-explanatory.
E: Compute temp/asphere requires extended particles
-This compute cannot be used with point paritlces.
+This compute cannot be used with point particles.
E: Could not find compute ID for temperature bias
diff --git a/src/PYTHON/python.h b/src/PYTHON/python.h
index 61e5f015e2..5f65e3970b 100644
--- a/src/PYTHON/python.h
+++ b/src/PYTHON/python.h
@@ -94,12 +94,12 @@ path and name are correct.
E: Could not process Python file
-The Python code in the specified file was not run sucessfully by
+The Python code in the specified file was not run successfully by
Python, probably due to errors in the Python code.
E: Could not process Python string
-The Python code in the here string was not run sucessfully by Python,
+The Python code in the here string was not run successfully by Python,
probably due to errors in the Python code.
E: Could not find Python function
@@ -123,7 +123,7 @@ Self-explanatory.
E: Python function evaluation failed
-The Python function did not run succesfully and/or did not return a
+The Python function did not run successfully and/or did not return a
value (if it is supposed to return a value). This is probably due to
some error condition in the function.
diff --git a/src/SHOCK/fix_append_atoms.h b/src/SHOCK/fix_append_atoms.h
index d9885998be..cc26acc8b8 100644
--- a/src/SHOCK/fix_append_atoms.h
+++ b/src/SHOCK/fix_append_atoms.h
@@ -94,7 +94,7 @@ type p (periodic).
E: Cannot append atoms to a triclinic box
-The simulation box must be defined with edges alligned with the
+The simulation box must be defined with edges aligned with the
Cartesian axes.
E: Fix ID for fix ave/spatial does not exist
diff --git a/src/SRD/fix_srd.h b/src/SRD/fix_srd.h
index fae9780b89..e14652e526 100644
--- a/src/SRD/fix_srd.h
+++ b/src/SRD/fix_srd.h
@@ -361,11 +361,11 @@ warning.
E: Bad quadratic solve for particle/line collision
-This is an internal error. It should nornally not occur.
+This is an internal error. It should normally not occur.
E: Bad quadratic solve for particle/tri collision
-This is an internal error. It should nornally not occur.
+This is an internal error. It should normally not occur.
W: Fix srd particle moved outside valid domain
@@ -377,7 +377,7 @@ Big particles must be extended spheriods or ellipsoids.
E: Cannot use lines with fix srd unless overlap is set
-This is because line segements are connected to each other.
+This is because line segments are connected to each other.
E: Cannot use tris with fix srd unless overlap is set
diff --git a/src/angle.h b/src/angle.h
index 119f206c36..8c8129bbbb 100644
--- a/src/angle.h
+++ b/src/angle.h
@@ -27,7 +27,7 @@ class Angle : protected Pointers {
int *setflag;
int writedata; // 1 if writes coeffs to data file
double energy; // accumulated energies
- double virial[6]; // accumlated virial
+ double virial[6]; // accumulated virial
double *eatom,**vatom; // accumulated per-atom energy/virial
// KOKKOS host/device flag and data masks
diff --git a/src/bond.h b/src/bond.h
index 06e05a7265..ffa1f5fb05 100644
--- a/src/bond.h
+++ b/src/bond.h
@@ -27,7 +27,7 @@ class Bond : protected Pointers {
int *setflag;
int writedata; // 1 if writes coeffs to data file
double energy; // accumulated energies
- double virial[6]; // accumlated virial
+ double virial[6]; // accumulated virial
double *eatom,**vatom; // accumulated per-atom energy/virial
// KOKKOS host/device flag and data masks
diff --git a/src/citeme.h b/src/citeme.h
index 80b642ab6d..18e9a712db 100644
--- a/src/citeme.h
+++ b/src/citeme.h
@@ -42,7 +42,7 @@ E: Cannot open log.cite file
This file is created when you use some LAMMPS features, to indicate
what paper you should cite on behalf of those who implemented
-the feature. Check that you have write priveleges into the directory
+the feature. Check that you have write privileges into the directory
you are running in.
*/
diff --git a/src/dihedral.h b/src/dihedral.h
index 68167eb86f..5f3909244f 100644
--- a/src/dihedral.h
+++ b/src/dihedral.h
@@ -27,7 +27,7 @@ class Dihedral : protected Pointers {
int *setflag;
int writedata; // 1 if writes coeffs to data file
double energy; // accumulated energy
- double virial[6]; // accumlated virial
+ double virial[6]; // accumulated virial
double *eatom,**vatom; // accumulated per-atom energy/virial
// KOKKOS host/device flag and data masks
diff --git a/src/fix.h b/src/fix.h
index bd3189afe7..8005da1add 100644
--- a/src/fix.h
+++ b/src/fix.h
@@ -89,7 +89,7 @@ class Fix : protected Pointers {
int comm_reverse; // size of reverse communication (0 if none)
int comm_border; // size of border communication (0 if none)
- double virial[6]; // accumlated virial
+ double virial[6]; // accumulated virial
double *eatom,**vatom; // accumulated per-atom energy/virial
int restart_reset; // 1 if restart just re-initialized fix
diff --git a/src/fix_ave_chunk.h b/src/fix_ave_chunk.h
index 18622699de..eb51043e0f 100644
--- a/src/fix_ave_chunk.h
+++ b/src/fix_ave_chunk.h
@@ -162,7 +162,7 @@ Self-explanatory.
E: Fix ave/chunk does not use chunk/atom compute
-The specified conpute is not for a compute chunk/atom command.
+The specified compute is not for a compute chunk/atom command.
E: Error writing file header
diff --git a/src/fix_langevin.h b/src/fix_langevin.h
index 863c0f554c..34eec63987 100644
--- a/src/fix_langevin.h
+++ b/src/fix_langevin.h
@@ -132,7 +132,7 @@ One of the particles has radius 0.0.
E: Fix langevin angmom requires extended particles
-This fix option cannot be used with point paritlces.
+This fix option cannot be used with point particles.
E: Cannot zero Langevin force of 0 atoms
diff --git a/src/improper.h b/src/improper.h
index b20bc732df..be78b6acf9 100644
--- a/src/improper.h
+++ b/src/improper.h
@@ -27,7 +27,7 @@ class Improper : protected Pointers {
int *setflag;
int writedata; // 1 if writes coeffs to data file
double energy; // accumulated energies
- double virial[6]; // accumlated virial
+ double virial[6]; // accumulated virial
double *eatom,**vatom; // accumulated per-atom energy/virial
// KOKKOS host/device flag and data masks
diff --git a/src/kspace.h b/src/kspace.h
index 95fb6ffaf2..c514516194 100644
--- a/src/kspace.h
+++ b/src/kspace.h
@@ -33,7 +33,7 @@ class KSpace : protected Pointers {
public:
double energy; // accumulated energies
double energy_1,energy_6;
- double virial[6]; // accumlated virial
+ double virial[6]; // accumulated virial
double *eatom,**vatom; // accumulated per-atom energy/virial
double e2group; // accumulated group-group energy
double f2group[3]; // accumulated group-group force
diff --git a/src/procmap.cpp b/src/procmap.cpp
index 088939b218..f54ac1915c 100644
--- a/src/procmap.cpp
+++ b/src/procmap.cpp
@@ -216,7 +216,7 @@ void ProcMap::numa_grid(int nprocs, int *user_procgrid, int *procgrid,
best_factors(numapossible,numafactors,numagrid,1,1,1);
- // user_nodegrid = implied user contraints on nodes
+ // user_nodegrid = implied user constraints on nodes
int user_nodegrid[3];
user_nodegrid[0] = user_procgrid[0] / numagrid[0];
diff --git a/src/region_cylinder.h b/src/region_cylinder.h
index bc5255b343..e065c7d3f1 100644
--- a/src/region_cylinder.h
+++ b/src/region_cylinder.h
@@ -78,6 +78,6 @@ Self-explanatory.
E: Variable for region cylinder is invalid style
-Only equal-style varaibles are allowed.
+Only equal-style variables are allowed.
*/
diff --git a/src/region_sphere.h b/src/region_sphere.h
index 9e1fb4e739..c003a91651 100644
--- a/src/region_sphere.h
+++ b/src/region_sphere.h
@@ -69,6 +69,6 @@ Self-explanatory.
E: Variable for region sphere is invalid style
-Only equal-style varaibles are allowed.
+Only equal-style variables are allowed.
*/
diff --git a/src/thermo.h b/src/thermo.h
index ddbe3cc95b..d6b3822efe 100644
--- a/src/thermo.h
+++ b/src/thermo.h
@@ -236,7 +236,7 @@ E: Lost atoms: original %ld current %ld
Lost atoms are checked for each time thermo output is done. See the
thermo_modify lost command for options. Lost atoms usually indicate
bad dynamics, e.g. atoms have been blown far out of the simulation
-box, or moved futher than one processor's sub-domain away before
+box, or moved further than one processor's sub-domain away before
reneighboring.
W: Lost atoms: original %ld current %ld
@@ -244,7 +244,7 @@ W: Lost atoms: original %ld current %ld
Lost atoms are checked for each time thermo output is done. See the
thermo_modify lost command for options. Lost atoms usually indicate
bad dynamics, e.g. atoms have been blown far out of the simulation
-box, or moved futher than one processor's sub-domain away before
+box, or moved further than one processor's sub-domain away before
reneighboring.
E: Thermo style does not use temp
diff --git a/tools/eff/cfg2lammps.py b/tools/eff/cfg2lammps.py
index 1bf364aa93..49830dbb09 100644
--- a/tools/eff/cfg2lammps.py
+++ b/tools/eff/cfg2lammps.py
@@ -217,7 +217,7 @@ def generate_lammps_input(infile):
if line.find("e_field_packet_duration")>=0:
continue
if line.find("set_limit")>=0:
- continue # need to add this contraint
+ continue # need to add this constraint
if line.find("set_limit_stiffness")>=0:
continue
if line.find("output_position")>=0:
diff --git a/tools/i-pi/ipi/engine/initializer.py b/tools/i-pi/ipi/engine/initializer.py
index 466677938a..de629c7f96 100644
--- a/tools/i-pi/ipi/engine/initializer.py
+++ b/tools/i-pi/ipi/engine/initializer.py
@@ -70,7 +70,7 @@ class InitBase(dobject):
Args:
value: A string which specifies what value to initialize the
simulation property to.
- mode: A string specifiying what style of initialization should be
+ mode: A string specifying what style of initialization should be
used to read the data.
units: A string giving which unit the value is in.
"""
@@ -97,7 +97,7 @@ class InitIndexed(InitBase):
Args:
value: A string which specifies what value to initialize the
simulation property to.
- mode: A string specifiying what style of initialization should be
+ mode: A string specifying what style of initialization should be
used to read the data.
units: A string giving which unit the value is in.
index: Which atom to initialize the value of.
From 084d831bce017e63c6557ba839898f75b77ea429 Mon Sep 17 00:00:00 2001
From: Richard Berger
Date: Sun, 5 Mar 2017 20:03:53 -0500
Subject: [PATCH 03/15] Second batch of spelling fixes in manual
---
doc/src/2001/input_commands.html | 4 +-
doc/src/99/input_commands.html | 4 +-
doc/src/Section_commands.txt | 2 +-
doc/src/Section_errors.txt | 82 ++++++++++++------------
doc/src/Section_howto.txt | 28 ++++----
doc/src/Section_modify.txt | 16 ++---
doc/src/Section_packages.txt | 4 +-
doc/src/Section_python.txt | 2 +-
doc/src/Section_start.txt | 10 +--
doc/src/Section_tools.txt | 2 +-
doc/src/accelerate_intel.txt | 2 +-
doc/src/accelerate_kokkos.txt | 6 +-
doc/src/atom_style.txt | 6 +-
doc/src/balance.txt | 6 +-
doc/src/change_box.txt | 2 +-
doc/src/compute.txt | 2 +-
doc/src/compute_centro_atom.txt | 6 +-
doc/src/compute_chunk_atom.txt | 4 +-
doc/src/compute_coord_atom.txt | 2 +-
doc/src/compute_event_displace.txt | 2 +-
doc/src/compute_global_atom.txt | 6 +-
doc/src/compute_heat_flux.txt | 4 +-
doc/src/compute_inertia_chunk.txt | 2 +-
doc/src/compute_msd_nongauss.txt | 2 +-
doc/src/compute_pair.txt | 2 +-
doc/src/compute_pair_local.txt | 2 +-
doc/src/compute_pe_atom.txt | 2 +-
doc/src/compute_pressure.txt | 2 +-
doc/src/compute_property_chunk.txt | 2 +-
doc/src/compute_rigid_local.txt | 2 +-
doc/src/compute_smd_ulsph_num_neighs.txt | 2 +-
doc/src/compute_stress_atom.txt | 2 +-
doc/src/compute_temp_chunk.txt | 4 +-
doc/src/dump.txt | 2 +-
doc/src/dump_custom_vtk.txt | 4 +-
doc/src/dump_image.txt | 6 +-
doc/src/dump_modify.txt | 2 +-
doc/src/fix_ave_chunk.txt | 6 +-
doc/src/fix_ave_correlate.txt | 2 +-
doc/src/fix_ave_time.txt | 4 +-
doc/src/fix_balance.txt | 8 +--
doc/src/fix_bond_break.txt | 2 +-
doc/src/fix_bond_create.txt | 2 +-
doc/src/fix_bond_swap.txt | 8 +--
doc/src/fix_box_relax.txt | 2 +-
doc/src/fix_colvars.txt | 4 +-
doc/src/fix_controller.txt | 2 +-
doc/src/fix_eos_table.txt | 2 +-
doc/src/fix_eos_table_rx.txt | 2 +-
doc/src/fix_evaporate.txt | 2 +-
doc/src/fix_gle.txt | 2 +-
doc/src/fix_langevin.txt | 2 +-
doc/src/fix_langevin_eff.txt | 2 +-
doc/src/fix_move.txt | 2 +-
doc/src/fix_mscg.txt | 2 +-
doc/src/fix_nve_asphere_noforce.txt | 2 +-
doc/src/fix_nvt_sllod_eff.txt | 2 +-
doc/src/fix_phonon.txt | 2 +-
doc/src/fix_pour.txt | 2 +-
doc/src/fix_qeq.txt | 2 +-
doc/src/fix_qeq_reax.txt | 2 +-
doc/src/fix_reax_bonds.txt | 2 +-
doc/src/fix_shake.txt | 6 +-
doc/src/fix_srd.txt | 10 +--
doc/src/fix_temp_berendsen.txt | 2 +-
doc/src/fix_temp_csvr.txt | 2 +-
doc/src/fix_temp_rescale.txt | 2 +-
doc/src/fix_temp_rescale_eff.txt | 2 +-
doc/src/fix_thermal_conductivity.txt | 6 +-
doc/src/fix_viscosity.txt | 6 +-
doc/src/group.txt | 4 +-
doc/src/if.txt | 2 +-
doc/src/improper_ring.txt | 2 +-
doc/src/info.txt | 2 +-
doc/src/kspace_modify.txt | 6 +-
doc/src/kspace_style.txt | 8 +--
doc/src/minimize.txt | 4 +-
doc/src/package.txt | 2 +-
doc/src/pair_adp.txt | 2 +-
doc/src/pair_agni.txt | 2 +-
doc/src/pair_beck.txt | 2 +-
doc/src/pair_body.txt | 2 +-
doc/src/pair_bop.txt | 4 +-
doc/src/pair_coul.txt | 4 +-
doc/src/pair_coul_diel.txt | 2 +-
doc/src/pair_dpd.txt | 2 +-
doc/src/pair_eam.txt | 2 +-
doc/src/pair_eim.txt | 2 +-
doc/src/pair_hbond_dreiding.txt | 2 +-
doc/src/pair_hybrid.txt | 2 +-
doc/src/pair_kim.txt | 2 +-
doc/src/pair_line_lj.txt | 8 +--
doc/src/pair_lj_soft.txt | 6 +-
doc/src/pair_meam_spline.txt | 2 +-
doc/src/pair_mie.txt | 2 +-
doc/src/pair_morse.txt | 2 +-
doc/src/pair_resquared.txt | 4 +-
doc/src/pair_smtbq.txt | 2 +-
doc/src/pair_sph_heatconduction.txt | 2 +-
doc/src/pair_srp.txt | 2 +-
doc/src/pair_table.txt | 2 +-
doc/src/partition.txt | 2 +-
doc/src/prd.txt | 4 +-
doc/src/processors.txt | 4 +-
doc/src/python.txt | 6 +-
doc/src/read_data.txt | 2 +-
doc/src/region.txt | 2 +-
doc/src/replicate.txt | 2 +-
doc/src/run_style.txt | 6 +-
doc/src/suffix.txt | 2 +-
doc/src/tad.txt | 6 +-
doc/src/thermo_style.txt | 4 +-
doc/src/timer.txt | 2 +-
doc/src/tutorial_drude.txt | 4 +-
doc/src/tutorial_pylammps.txt | 2 +-
doc/src/variable.txt | 2 +-
doc/src/write_dump.txt | 2 +-
117 files changed, 245 insertions(+), 245 deletions(-)
diff --git a/doc/src/2001/input_commands.html b/doc/src/2001/input_commands.html
index e37d01a0d4..f80185a9f3 100644
--- a/doc/src/2001/input_commands.html
+++ b/doc/src/2001/input_commands.html
@@ -689,7 +689,7 @@ coeffs: types
remainder
no other parameters required
-used with "create temp" commmand to initialize velocities of atoms
+used with "create temp" command to initialize velocities of atoms
by default, the "create temp" command initializes the velocities of all atoms,
this command limits the initialization to a group of atoms
this command is only in force for the next "create temp" command, any
@@ -1788,7 +1788,7 @@ if the style is 2, restart information will be written alternately to files
when the minimizer is invoked this command means create a restart file
at the end of the minimization with the filename filename.timestep.min
a restart file stores atom and force-field information in binary form
-allows program to restart from where it left off (see "read restart" commmand)
+allows program to restart from where it left off (see "read restart" command)
Default = 0
diff --git a/doc/src/99/input_commands.html b/doc/src/99/input_commands.html
index 1de02b1686..41b9cb4f7a 100644
--- a/doc/src/99/input_commands.html
+++ b/doc/src/99/input_commands.html
@@ -477,7 +477,7 @@ coeffs: types
remainder
no other parameters required
-used with "create temp" commmand to initialize velocities of atoms
+used with "create temp" command to initialize velocities of atoms
by default, the "create temp" command initializes the velocities of all atoms,
this command limits the initialization to a group of atoms
this command is only in force for the next "create temp" command, any
@@ -1343,7 +1343,7 @@ value of 0 means never create one
program will toggle between 2 filenames as the run progresses
so always have at least one good file even if the program dies in mid-write
restart file stores atom positions and velocities in binary form
-allows program to restart from where it left off (see "read restart" commmand)
+allows program to restart from where it left off (see "read restart" command)
Default = 0
diff --git a/doc/src/Section_commands.txt b/doc/src/Section_commands.txt
index c36c961de3..5cb7b3b7d6 100644
--- a/doc/src/Section_commands.txt
+++ b/doc/src/Section_commands.txt
@@ -361,7 +361,7 @@ Settings:
"timer"_timer.html,
"timestep"_timestep.html
-Operations within timestepping (fixes) and diagnositics (computes):
+Operations within timestepping (fixes) and diagnostics (computes):
"compute"_compute.html,
"compute_modify"_compute_modify.html,
diff --git a/doc/src/Section_errors.txt b/doc/src/Section_errors.txt
index 950ae77d19..c66a276bfa 100644
--- a/doc/src/Section_errors.txt
+++ b/doc/src/Section_errors.txt
@@ -992,7 +992,7 @@ file. :dd
LAMMPS failed to compute an initial guess for the PPPM_disp g_ewald_6
factor that partitions the computation between real space and k-space
-for Disptersion interactions. :dd
+for Dispersion interactions. :dd
{Cannot create an atom map unless atoms have IDs} :dt
@@ -2005,7 +2005,7 @@ Self-explanatory. :dd
{Cannot use fix reax/bonds without pair_style reax} :dt
-Self-explantory. :dd
+Self-explanatory. :dd
{Cannot use fix rigid npt/nph and fix deform on same component of stress tensor} :dt
@@ -2131,7 +2131,7 @@ Self-explanatory. :dd
{Cannot use newton pair with born/gpu pair style} :dt
-Self-explantory. :dd
+Self-explanatory. :dd
{Cannot use newton pair with buck/coul/cut/gpu pair style} :dt
@@ -2291,7 +2291,7 @@ Self-explanatory. :dd
{Cannot use newton pair with zbl/gpu pair style} :dt
-Self-explantory. :dd
+Self-explanatory. :dd
{Cannot use non-zero forces in an energy minimization} :dt
@@ -2641,11 +2641,11 @@ uses a pairwise neighbor list. :dd
{Compute chunk/atom bin/cylinder radius is too large for periodic box} :dt
-Radius cannot be bigger than 1/2 of a non-axis periodic dimention. :dd
+Radius cannot be bigger than 1/2 of a non-axis periodic dimension. :dd
{Compute chunk/atom bin/sphere radius is too large for periodic box} :dt
-Radius cannot be bigger than 1/2 of any periodic dimention. :dd
+Radius cannot be bigger than 1/2 of any periodic dimension. :dd
{Compute chunk/atom compute array is accessed out-of-range} :dt
@@ -2706,15 +2706,15 @@ It will only store IDs if its compress option is enabled. :dd
{Compute chunk/atom stores no coord1 for compute property/chunk} :dt
-Only certain binning options for comptue chunk/atom store coordinates. :dd
+Only certain binning options for compute chunk/atom store coordinates. :dd
{Compute chunk/atom stores no coord2 for compute property/chunk} :dt
-Only certain binning options for comptue chunk/atom store coordinates. :dd
+Only certain binning options for compute chunk/atom store coordinates. :dd
{Compute chunk/atom stores no coord3 for compute property/chunk} :dt
-Only certain binning options for comptue chunk/atom store coordinates. :dd
+Only certain binning options for compute chunk/atom store coordinates. :dd
{Compute chunk/atom variable is not atom-style variable} :dt
@@ -2735,11 +2735,11 @@ is used to find clusters. :dd
{Compute cna/atom cutoff is longer than pairwise cutoff} :dt
-Self-explantory. :dd
+Self-explanatory. :dd
{Compute cna/atom requires a pair style be defined} :dt
-Self-explantory. :dd
+Self-explanatory. :dd
{Compute com/chunk does not use chunk/atom compute} :dt
@@ -2747,7 +2747,7 @@ The style of the specified compute is not chunk/atom. :dd
{Compute contact/atom requires a pair style be defined} :dt
-Self-explantory. :dd
+Self-explanatory. :dd
{Compute contact/atom requires atom style sphere} :dt
@@ -2760,7 +2760,7 @@ since those atoms are not in the neighbor list. :dd
{Compute coord/atom requires a pair style be defined} :dt
-Self-explantory. :dd
+Self-explanatory. :dd
{Compute damage/atom requires peridynamic potential} :dt
@@ -2835,7 +2835,7 @@ Cannot compute order parameter beyond cutoff. :dd
{Compute hexorder/atom requires a pair style be defined} :dt
-Self-explantory. :dd
+Self-explanatory. :dd
{Compute improper/local used when impropers are not allowed} :dt
@@ -2881,11 +2881,11 @@ Cannot compute order parameter beyond cutoff. :dd
{Compute orientorder/atom requires a pair style be defined} :dt
-Self-explantory. :dd
+Self-explanatory. :dd
{Compute pair must use group all} :dt
-Pair styles accumlate energy on all atoms. :dd
+Pair styles accumulate energy on all atoms. :dd
{Compute pe must use group all} :dt
@@ -2935,7 +2935,7 @@ The style of the specified compute is not chunk/atom. :dd
{Compute property/local cannot use these inputs together} :dt
Only inputs that generate the same number of datums can be used
-togther. E.g. bond and angle quantities cannot be mixed. :dd
+together. E.g. bond and angle quantities cannot be mixed. :dd
{Compute property/local does not (yet) work with atom_style template} :dt
@@ -3638,7 +3638,7 @@ Self-explanatory. :dd
{Cutoffs missing in pair_style buck/long/coul/long} :dt
-Self-exlanatory. :dd
+Self-explanatory. :dd
{Cutoffs missing in pair_style lj/long/coul/long} :dt
@@ -4617,11 +4617,11 @@ An index for the array is out of bounds. :dd
{Fix ave/time compute does not calculate a scalar} :dt
-Self-explantory. :dd
+Self-explanatory. :dd
{Fix ave/time compute does not calculate a vector} :dt
-Self-explantory. :dd
+Self-explanatory. :dd
{Fix ave/time compute does not calculate an array} :dt
@@ -6171,7 +6171,7 @@ map command will force an atom map to be created. :dd
{Initial temperatures not all set in fix ttm} :dt
-Self-explantory. :dd
+Self-explanatory. :dd
{Input line quote not followed by whitespace} :dt
@@ -6199,7 +6199,7 @@ Eigensolve for rigid body was not sufficiently accurate. :dd
{Insufficient Jacobi rotations for triangle} :dt
-The calculation of the intertia tensor of the triangle failed. This
+The calculation of the inertia tensor of the triangle failed. This
should not happen if it is a reasonably shaped triangle. :dd
{Insufficient memory on accelerator} :dt
@@ -6463,15 +6463,15 @@ Self-explanatory. :dd
{Invalid attribute in dump custom command} :dt
-Self-explantory. :dd
+Self-explanatory. :dd
{Invalid attribute in dump local command} :dt
-Self-explantory. :dd
+Self-explanatory. :dd
{Invalid attribute in dump modify command} :dt
-Self-explantory. :dd
+Self-explanatory. :dd
{Invalid basis setting in create_atoms command} :dt
@@ -6737,7 +6737,7 @@ or cause multiple files to be written. :dd
Filenames used with the dump xyz style cannot be binary or cause files
to be written by each processor. :dd
-{Invalid dump_modify threshhold operator} :dt
+{Invalid dump_modify threshold operator} :dt
Operator keyword used for threshold specification in not recognized. :dd
@@ -6751,7 +6751,7 @@ The fix is not recognized. :dd
{Invalid fix ave/time off column} :dt
-Self-explantory. :dd
+Self-explanatory. :dd
{Invalid fix box/relax command for a 2d simulation} :dt
@@ -7313,7 +7313,7 @@ Self-explanatory. Check the input script or data file. :dd
{LJ6 off not supported in pair_style buck/long/coul/long} :dt
-Self-exlanatory. :dd
+Self-explanatory. :dd
{Label wasn't found in input script} :dt
@@ -7526,7 +7526,7 @@ Self-explanatory. :dd
{Molecule template ID for create_atoms does not exist} :dt
-Self-explantory. :dd
+Self-explanatory. :dd
{Molecule template ID for fix deposit does not exist} :dt
@@ -7792,7 +7792,7 @@ Self-explanatory. :dd
{Must use variable energy with fix addforce} :dt
-Must define an energy vartiable when applyting a dynamic
+Must define an energy variable when applying a dynamic
force during minimization. :dd
{Must use variable energy with fix efield} :dt
@@ -8042,7 +8042,7 @@ Self-explanatory. :dd
{Non digit character between brackets in variable} :dt
-Self-explantory. :dd
+Self-explanatory. :dd
{Non integer # of swaps in temper command} :dt
@@ -8663,7 +8663,7 @@ not be invoked by bond_style quartic. :dd
{Pair style does not support compute group/group} :dt
The pair_style does not have a single() function, so it cannot be
-invokded by the compute group/group command. :dd
+invoked by the compute group/group command. :dd
{Pair style does not support compute pair/local} :dt
@@ -8948,11 +8948,11 @@ Self-explanatory. :dd
{Pair yukawa/colloid requires atom style sphere} :dt
-Self-explantory. :dd
+Self-explanatory. :dd
{Pair yukawa/colloid requires atoms with same type have same radius} :dt
-Self-explantory. :dd
+Self-explanatory. :dd
{Pair yukawa/colloid/gpu requires atom style sphere} :dt
@@ -10025,7 +10025,7 @@ make sense in between runs. :dd
{Threshhold for an atom property that isn't allocated} :dt
-A dump threshhold has been requested on a quantity that is
+A dump threshold has been requested on a quantity that is
not defined by the atom style used in this simulation. :dd
{Timestep must be >= 0} :dt
@@ -10087,7 +10087,7 @@ to a large size. :dd
{Too many atom triplets for pair bop} :dt
The number of three atom groups for angle determinations exceeds the
-expected number. Check your atomic structrure to ensure that it is
+expected number. Check your atomic structure to ensure that it is
realistic. :dd
{Too many atoms for dump dcd} :dt
@@ -10155,7 +10155,7 @@ to a large size. :dd
{Too many timesteps} :dt
-The cummulative timesteps must fit in a 64-bit integer. :dd
+The cumulative timesteps must fit in a 64-bit integer. :dd
{Too many timesteps for NEB} :dt
@@ -10796,7 +10796,7 @@ Self-explanatory. :dd
{Variable name for fix deform does not exist} :dt
-Self-explantory. :dd
+Self-explanatory. :dd
{Variable name for fix efield does not exist} :dt
@@ -11083,7 +11083,7 @@ for a dihedral) and adding a small amount of stretch. :dd
{Both groups in compute group/group have a net charge; the Kspace boundary correction to energy will be non-zero} :dt
-Self-explantory. :dd
+Self-explanatory. :dd
{Calling write_dump before a full system init.} :dt
@@ -11537,7 +11537,7 @@ neigh_modify exclude command. :dd
If a thermo_style command is used after a thermo_modify command, the
settings changed by the thermo_modify command will be reset to their
-default values. This is because the thermo_modify commmand acts on
+default values. This is because the thermo_modify command acts on
the currently defined thermo style, and a thermo_style command creates
a new style. :dd
@@ -11886,7 +11886,7 @@ Self-explanatory. :dd
{Using largest cutoff for buck/long/coul/long} :dt
-Self-exlanatory. :dd
+Self-explanatory. :dd
{Using largest cutoff for lj/long/coul/long} :dt
diff --git a/doc/src/Section_howto.txt b/doc/src/Section_howto.txt
index b69d69614a..010462ce7e 100644
--- a/doc/src/Section_howto.txt
+++ b/doc/src/Section_howto.txt
@@ -618,7 +618,7 @@ any of the parameters above, though it becomes a different model in
that mode of usage.
The SPC/E (extended) water model is the same, except
-the partial charge assignemnts change:
+the partial charge assignments change:
O charge = -0.8476
H charge = 0.4238 :all(b),p
@@ -982,10 +982,10 @@ used with non-orthogonal basis vectors to define a lattice that will
tile a triclinic simulation box via the
"create_atoms"_create_atoms.html command.
-A second use is to run Parinello-Rahman dyanamics via the "fix
+A second use is to run Parinello-Rahman dynamics via the "fix
npt"_fix_nh.html command, which will adjust the xy, xz, yz tilt
factors to compensate for off-diagonal components of the pressure
-tensor. The analalog for an "energy minimization"_minimize.html is
+tensor. The analog for an "energy minimization"_minimize.html is
the "fix box/relax"_fix_box_relax.html command.
A third use is to shear a bulk solid to study the response of the
@@ -1392,7 +1392,7 @@ custom"_dump.html command.
There is also a "dump local"_dump.html format where the user specifies
what local values to output. A pre-defined index keyword can be
-specified to enumuerate the local values. Two additional kinds of
+specified to enumerate the local values. Two additional kinds of
keywords can also be specified (c_ID, f_ID), where a
"compute"_compute.html or "fix"_fix.html or "variable"_variable.html
provides the values to be output. In each case, the compute or fix
@@ -1640,14 +1640,14 @@ nvt/asphere"_fix_nvt_asphere.html thermostat not only translation
velocities but also rotational velocities for spherical and aspherical
particles.
-DPD thermostatting alters pairwise interactions in a manner analagous
+DPD thermostatting alters pairwise interactions in a manner analogous
to the per-particle thermostatting of "fix
langevin"_fix_langevin.html.
Any of the thermostatting fixes can use temperature computes that
remove bias which has two effects. First, the current calculated
temperature, which is compared to the requested target temperature, is
-caluclated with the velocity bias removed. Second, the thermostat
+calculated with the velocity bias removed. Second, the thermostat
adjusts only the thermal temperature component of the particle's
velocities, which are the velocities with the bias removed. The
removed bias is then added back to the adjusted velocities. See the
@@ -2013,7 +2013,7 @@ a simple Lennard-Jones fluid model. Also, see "this
section"_Section_howto.html#howto_21 of the manual for an analogous
discussion for viscosity.
-The thermal conducitivity tensor kappa is a measure of the propensity
+The thermal conductivity tensor kappa is a measure of the propensity
of a material to transmit heat energy in a diffusive manner as given
by Fourier's law
@@ -2099,7 +2099,7 @@ and grad(Vstream) is the spatial gradient of the velocity of the fluid
moving in another direction, normal to the area through which the
momentum flows. Viscosity thus has units of pressure-time.
-The first method is to perform a non-equlibrium MD (NEMD) simulation
+The first method is to perform a non-equilibrium MD (NEMD) simulation
by shearing the simulation box via the "fix deform"_fix_deform.html
command, and using the "fix nvt/sllod"_fix_nvt_sllod.html command to
thermostat the fluid via the SLLOD equations of motion.
@@ -2125,7 +2125,7 @@ the rNEMD algorithm of Muller-Plathe. Momentum in one dimension is
swapped between atoms in two different layers of the simulation box in
a different dimension. This induces a velocity gradient which can be
monitored with the "fix ave/chunk"_fix_ave_chunk.html command.
-The fix tallies the cummulative momentum transfer that it performs.
+The fix tallies the cumulative momentum transfer that it performs.
See the "fix viscosity"_fix_viscosity.html command for details.
The fourth method is based on the Green-Kubo (GK) formula which
@@ -2353,7 +2353,7 @@ largest cluster or fastest diffusing molecule. :l
Example calculations with chunks :h5
-Here are eaxmples using chunk commands to calculate various
+Here are examples using chunk commands to calculate various
properties:
(1) Average velocity in each of 1000 2d spatial bins:
@@ -2424,7 +2424,7 @@ which both have their up- and downsides.
The first approach is to set desired real-space an kspace accuracies
via the {kspace_modify force/disp/real} and {kspace_modify
force/disp/kspace} commands. Note that the accuracies have to be
-specified in force units and are thus dependend on the chosen unit
+specified in force units and are thus dependent on the chosen unit
settings. For real units, 0.0001 and 0.002 seem to provide reasonable
accurate and efficient computations for the real-space and kspace
accuracies. 0.002 and 0.05 work well for most systems using lj
@@ -2478,7 +2478,7 @@ arithmetic mixing rule substantially increases the computational cost.
The computational overhead can be reduced using the {kspace_modify
mix/disp geom} and {kspace_modify splittol} commands. The first
command simply enforces geometric mixing of the dispersion
-coeffiecients in kspace computations. This introduces some error in
+coefficients in kspace computations. This introduces some error in
the computations but will also significantly speed-up the
simulations. The second keyword sets the accuracy with which the
dispersion coefficients are approximated using a matrix factorization
@@ -2497,7 +2497,7 @@ to specify this command explicitly.
6.25 Polarizable models :link(howto_25),h4
In polarizable force fields the charge distributions in molecules and
-materials respond to their electrostatic environements. Polarizable
+materials respond to their electrostatic environments. Polarizable
systems can be simulated in LAMMPS using three methods:
the fluctuating charge method, implemented in the "QEQ"_fix_qeq.html
@@ -2738,7 +2738,7 @@ the core/shell particles, but only assign a center-of-mass velocity to
the pairs. This can be done by using the {bias} keyword of the
"velocity create"_velocity.html command and assigning the "compute
temp/cs"_compute_temp_cs.html command to the {temp} keyword of the
-"velocity"_velocity.html commmand, e.g.
+"velocity"_velocity.html command, e.g.
velocity all create 1427 134 bias yes temp CSequ
velocity all scale 1427 temp CSequ :pre
diff --git a/doc/src/Section_modify.txt b/doc/src/Section_modify.txt
index 228c7199fd..2e2d5d77f3 100644
--- a/doc/src/Section_modify.txt
+++ b/doc/src/Section_modify.txt
@@ -159,17 +159,17 @@ pack_comm_vel: add velocity info to communication buffer (required)
pack_comm_hybrid: store extra info unique to this atom style (optional)
unpack_comm: retrieve an atom's info from the buffer (required)
unpack_comm_vel: also retrieve velocity info (required)
-unpack_comm_hybrid: retreive extra info unique to this atom style (optional)
+unpack_comm_hybrid: retrieve extra info unique to this atom style (optional)
pack_reverse: store an atom's info in a buffer communicating partial forces (required)
pack_reverse_hybrid: store extra info unique to this atom style (optional)
unpack_reverse: retrieve an atom's info from the buffer (required)
-unpack_reverse_hybrid: retreive extra info unique to this atom style (optional)
+unpack_reverse_hybrid: retrieve extra info unique to this atom style (optional)
pack_border: store an atom's info in a buffer communicated on neighbor re-builds (required)
pack_border_vel: add velocity info to buffer (required)
pack_border_hybrid: store extra info unique to this atom style (optional)
unpack_border: retrieve an atom's info from the buffer (required)
unpack_border_vel: also retrieve velocity info (required)
-unpack_border_hybrid: retreive extra info unique to this atom style (optional)
+unpack_border_hybrid: retrieve extra info unique to this atom style (optional)
pack_exchange: store all an atom's info to migrate to another processor (required)
unpack_exchange: retrieve an atom's info from the buffer (required)
size_restart: number of restart quantities associated with proc's atoms (required)
@@ -517,7 +517,7 @@ class. See region.h for details.
inside: determine whether a point is in the region
surface_interior: determine if a point is within a cutoff distance inside of surc
surface_exterior: determine if a point is within a cutoff distance outside of surf
-shape_update : change region shape if set by time-depedent variable :tb(s=:)
+shape_update : change region shape if set by time-dependent variable :tb(s=:)
:line
@@ -601,16 +601,16 @@ Adding keywords for the "thermo_style custom"_thermo_style.html command
"here"_Section_modify.html#mod_13 on this page.
Adding a new math function of one or two arguments can be done by
-editing one section of the Variable::evaulate() method. Search for
+editing one section of the Variable::evaluate() method. Search for
the word "customize" to find the appropriate location.
Adding a new group function can be done by editing one section of the
-Variable::evaulate() method. Search for the word "customize" to find
+Variable::evaluate() method. Search for the word "customize" to find
the appropriate location. You may need to add a new method to the
Group class as well (see the group.cpp file).
Accessing a new atom-based vector can be done by editing one section
-of the Variable::evaulate() method. Search for the word "customize"
+of the Variable::evaluate() method. Search for the word "customize"
to find the appropriate location.
Adding new "compute styles"_compute.html (whose calculated values can
@@ -740,7 +740,7 @@ entry to add to the USER-MISC/README file in that dir, along with the
contribute several individual features. :l
If you want your contribution to be added as a user-contribution and
-it is several related featues, it is probably best to make it a user
+it is several related features, it is probably best to make it a user
package directory with a name like USER-FOO. In addition to your new
files, the directory should contain a README text file. The README
should contain your name and contact information and a brief
diff --git a/doc/src/Section_packages.txt b/doc/src/Section_packages.txt
index b9b96d66ad..00b1fb1067 100644
--- a/doc/src/Section_packages.txt
+++ b/doc/src/Section_packages.txt
@@ -462,7 +462,7 @@ options you are optimizing for: CPU acceleration via OpenMP, GPU
acceleration, or Intel Xeon Phi. (You can build multiple times to
create LAMMPS executables for different hardware.) It also requires a
C++11 compatible compiler. For GPUs, the NVIDIA "nvcc" compiler is
-used, and an appopriate KOKKOS_ARCH setting should be made in your
+used, and an appropriate KOKKOS_ARCH setting should be made in your
Makefile.machine for your GPU hardware and NVIDIA software.
The simplest way to do this is to use Makefile.kokkos_cuda or
@@ -1848,7 +1848,7 @@ See this doc page to get started:
The persons who created the USER-SMTBQ package are Nicolas Salles,
Emile Maras, Olivier Politano, Robert Tetot, who can be contacted at
-these email addreses: lammps@u-bourgogne.fr, nsalles@laas.fr. Contact
+these email addresses: lammps@u-bourgogne.fr, nsalles@laas.fr. Contact
them directly if you have any questions.
Examples: examples/USER/smtbq
diff --git a/doc/src/Section_python.txt b/doc/src/Section_python.txt
index bd4dfcf538..e1d5f0f867 100644
--- a/doc/src/Section_python.txt
+++ b/doc/src/Section_python.txt
@@ -662,7 +662,7 @@ or integers (int **) is returned. You need to specify the appropriate
data type via the type argument.
For extract_compute() and extract_fix(), the global, per-atom, or
-local data calulated by the compute or fix can be accessed. What is
+local data calculated by the compute or fix can be accessed. What is
returned depends on whether the compute or fix calculates a scalar or
vector or array. For a scalar, a single double value is returned. If
the compute or fix calculates a vector or array, a pointer to the
diff --git a/doc/src/Section_start.txt b/doc/src/Section_start.txt
index 2146830753..9f6c113449 100644
--- a/doc/src/Section_start.txt
+++ b/doc/src/Section_start.txt
@@ -362,7 +362,7 @@ installed on your platform. If MPI is installed on your system in the
usual place (under /usr/local), you also may not need to specify these
3 variables, assuming /usr/local is in your path. On some large
parallel machines which use "modules" for their compile/link
-environements, you may simply need to include the correct module in
+environments, you may simply need to include the correct module in
your build environment, before building LAMMPS. Or the parallel
machine may have a vendor-provided MPI which the compiler has no
trouble finding.
@@ -430,7 +430,7 @@ use the KISS library described above.
You may also need to set the FFT_INC, FFT_PATH, and FFT_LIB variables,
so the compiler and linker can find the needed FFT header and library
files. Note that on some large parallel machines which use "modules"
-for their compile/link environements, you may simply need to include
+for their compile/link environments, you may simply need to include
the correct module in your build environment. Or the parallel machine
may have a vendor-provided FFT library which the compiler has no
trouble finding.
@@ -450,7 +450,7 @@ you must also manually specify the correct library, namely -lsfftw or
The FFT_INC variable also allows for a -DFFT_SINGLE setting that will
use single-precision FFTs with PPPM, which can speed-up long-range
-calulations, particularly in parallel or on GPUs. Fourier transform
+calculations, particularly in parallel or on GPUs. Fourier transform
and related PPPM operations are somewhat insensitive to floating point
truncation errors and thus do not always need to be performed in
double precision. Using the -DFFT_SINGLE setting trades off a little
@@ -1008,7 +1008,7 @@ Instead, it creates src/MAKE/MINE/Makefile.auto, which you can save or
rename if desired. Likewise it creates an executable named
src/lmp_auto, which you can rename using the -o switch if desired.
-The most recently executed Make.py commmand is saved in
+The most recently executed Make.py command is saved in
src/Make.py.last. You can use the "-r" switch (for redo) to re-invoke
the last command, or you can save a sequence of one or more Make.py
commands to a file and invoke the file of commands using "-r". You
@@ -1064,7 +1064,7 @@ src/MAKE/Makefile.foo and perform the build in the directory
Obj_shared_foo. This is so that each file can be compiled with the
-fPIC flag which is required for inclusion in a shared library. The
build will create the file liblammps_foo.so which another application
-can link to dyamically. It will also create a soft link liblammps.so,
+can link to dynamically. It will also create a soft link liblammps.so,
which will point to the most recently built shared library. This is
the file the Python wrapper loads by default.
diff --git a/doc/src/Section_tools.txt b/doc/src/Section_tools.txt
index f469390ced..83fb7a6bce 100644
--- a/doc/src/Section_tools.txt
+++ b/doc/src/Section_tools.txt
@@ -471,7 +471,7 @@ These tools were written by Aidan Thompson at Sandia.
restart2data tool :h4,link(restart)
NOTE: This tool is now obsolete and is not included in the current
-LAMMPS distribution. This is becaues there is now a
+LAMMPS distribution. This is because there is now a
"write_data"_write_data.html command, which can create a data file
from within an input script. Running LAMMPS with the "-r"
"command-line switch"_Section_start.html#start_7 as follows:
diff --git a/doc/src/accelerate_intel.txt b/doc/src/accelerate_intel.txt
index 088e6db113..cbb5e2e435 100644
--- a/doc/src/accelerate_intel.txt
+++ b/doc/src/accelerate_intel.txt
@@ -428,7 +428,7 @@ to the card. This allows for overlap of MPI communication of forces
with computation on the coprocessor when the "newton"_newton.html
setting is "on". The default is dependent on the style being used,
however, better performance may be achieved by setting this option
-explictly.
+explicitly.
When using offload with CPU Hyper-Threading disabled, it may help
performance to use fewer MPI tasks and OpenMP threads than available
diff --git a/doc/src/accelerate_kokkos.txt b/doc/src/accelerate_kokkos.txt
index 3d31344c24..26e35e23d1 100644
--- a/doc/src/accelerate_kokkos.txt
+++ b/doc/src/accelerate_kokkos.txt
@@ -234,7 +234,7 @@ provides alternative methods via environment variables for binding
threads to hardware cores. More info on binding threads to cores is
given in "Section 5.3"_Section_accelerate.html#acc_3.
-KOKKOS_ARCH=KNC enables compiler switches needed when compling for an
+KOKKOS_ARCH=KNC enables compiler switches needed when compiling for an
Intel Phi processor.
KOKKOS_USE_TPLS=librt enables use of a more accurate timer mechanism
@@ -272,7 +272,7 @@ coprocessor support you need to insure there are one or more MPI tasks
per coprocessor, and choose the number of coprocessor threads to use
per MPI task (via the "-k" command-line switch discussed below). The
product of MPI tasks * coprocessor threads/task should not exceed the
-maximum number of threads the coproprocessor is designed to run,
+maximum number of threads the coprocessor is designed to run,
otherwise performance will suffer. This value is 240 for current
generation Xeon Phi(TM) chips, which is 60 physical cores * 4
threads/core. Note that with the KOKKOS package you do not need to
@@ -333,7 +333,7 @@ device=CUDA are the same.
You must still use the "-k on" "command-line
switch"_Section_start.html#start_7 to enable the KOKKOS package, and
-specify its additional arguments for hardware options appopriate to
+specify its additional arguments for hardware options appropriate to
your system, as documented above.
Use the "suffix kk"_suffix.html command, or you can explicitly add a
diff --git a/doc/src/atom_style.txt b/doc/src/atom_style.txt
index 9ba817a663..6a8588e08a 100644
--- a/doc/src/atom_style.txt
+++ b/doc/src/atom_style.txt
@@ -115,7 +115,7 @@ particle.
For the {ellipsoid} style, the particles are ellipsoids and each
stores a flag which indicates whether it is a finite-size ellipsoid or
a point particle. If it is an ellipsoid, it also stores a shape
-vector with the 3 diamters of the ellipsoid and a quaternion 4-vector
+vector with the 3 diameters of the ellipsoid and a quaternion 4-vector
with its orientation.
For the {dipole} style, a point dipole is defined for each point
@@ -195,7 +195,7 @@ the {bstyle} argument. Body particles can represent complex entities,
such as surface meshes of discrete points, collections of
sub-particles, deformable objects, etc.
-The "body"_body.html doc page descibes the body styles LAMMPS
+The "body"_body.html doc page describes the body styles LAMMPS
currently supports, and provides more details as to the kind of body
particles they represent. For all styles, each body particle stores
moments of inertia and a quaternion 4-vector, so that its orientation
@@ -280,7 +280,7 @@ The {dpd} style is part of the USER-DPD package for dissipative
particle dynamics (DPD).
The {meso} style is part of the USER-SPH package for smoothed particle
-hydrodyanmics (SPH). See "this PDF
+hydrodynamics (SPH). See "this PDF
guide"_USER/sph/SPH_LAMMPS_userguide.pdf to using SPH in LAMMPS.
The {wavepacket} style is part of the USER-AWPMD package for the
diff --git a/doc/src/balance.txt b/doc/src/balance.txt
index b9d36452a6..9951e44a91 100644
--- a/doc/src/balance.txt
+++ b/doc/src/balance.txt
@@ -12,7 +12,7 @@ balance command :h3
balance thresh style args ... keyword args ... :pre
-thresh = imbalance threshhold that must be exceeded to perform a re-balance :ulb,l
+thresh = imbalance threshold that must be exceeded to perform a re-balance :ulb,l
one style/arg pair can be used (or multiple for {x},{y},{z}) :l
style = {x} or {y} or {z} or {shift} or {rcb} :l
{x} args = {uniform} or Px-1 numbers between 0 and 1
@@ -30,7 +30,7 @@ style = {x} or {y} or {z} or {shift} or {rcb} :l
{shift} args = dimstr Niter stopthresh
dimstr = sequence of letters containing "x" or "y" or "z", each not more than once
Niter = # of times to iterate within each dimension of dimstr sequence
- stopthresh = stop balancing when this imbalance threshhold is reached
+ stopthresh = stop balancing when this imbalance threshold is reached
{rcb} args = none :pre
zero or more keyword/arg pairs may be appended :l
keyword = {weight} or {out} :l
@@ -91,7 +91,7 @@ The balancing can be performed with or without per-particle weighting.
With no weighting, the balancing attempts to assign an equal number of
particles to each processor. With weighting, the balancing attempts
to assign an equal aggregate computational weight to each processor,
-which typically inducces a diffrent number of atoms assigned to each
+which typically inducces a different number of atoms assigned to each
processor. Details on the various weighting options and examples for
how they can be used are "given below"_#weighted_balance.
diff --git a/doc/src/change_box.txt b/doc/src/change_box.txt
index c6556e0fc9..c9c4d7a3b6 100644
--- a/doc/src/change_box.txt
+++ b/doc/src/change_box.txt
@@ -289,7 +289,7 @@ the create_box command is encountered in the input script.
The {remap} keyword remaps atom coordinates from the last saved box
size/shape to the current box state. For example, if you stretch the
box in the x dimension or tilt it in the xy plane via the {x} and {xy}
-keywords, then the {remap} commmand will dilate or tilt the atoms to
+keywords, then the {remap} command will dilate or tilt the atoms to
conform to the new box size/shape, as if the atoms moved with the box
as it deformed.
diff --git a/doc/src/compute.txt b/doc/src/compute.txt
index 8ecfd81af1..eed190aeb2 100644
--- a/doc/src/compute.txt
+++ b/doc/src/compute.txt
@@ -235,7 +235,7 @@ section of "this page"_Section_commands.html#cmd_5.
"temp/ramp"_compute_temp_ramp.html - temperature excluding ramped velocity component
"temp/region"_compute_temp_region.html - temperature of a region of atoms
"temp/sphere"_compute_temp_sphere.html - temperature of spherical particles
-"ti"_compute_ti.html - thermodyanmic integration free energy values
+"ti"_compute_ti.html - thermodynamic integration free energy values
"torque/chunk"_compute_torque_chunk.html - torque applied on each chunk
"vacf"_compute_vacf.html - velocity-autocorrelation function of group of atoms
"vcm/chunk"_compute_vcm_chunk.html - velocity of center-of-mass for each chunk
diff --git a/doc/src/compute_centro_atom.txt b/doc/src/compute_centro_atom.txt
index 0a48ccb5be..4e4b03d167 100644
--- a/doc/src/compute_centro_atom.txt
+++ b/doc/src/compute_centro_atom.txt
@@ -18,8 +18,8 @@ lattice = {fcc} or {bcc} or N = # of neighbors per atom to include :l
zero or more keyword/value pairs may be appended :l
keyword = {axes} :l
{axes} value = {no} or {yes}
- {no} = do not calulate 3 symmetry axes
- {yes} = calulate 3 symmetry axes :pre
+ {no} = do not calculate 3 symmetry axes
+ {yes} = calculate 3 symmetry axes :pre
:ule
[Examples:]
@@ -108,7 +108,7 @@ symmetry axis, followed by the second, and third symmetry axes in
columns 5-7 and 8-10.
The centrosymmetry values are unitless values >= 0.0. Their magnitude
-depends on the lattice style due to the number of contibuting neighbor
+depends on the lattice style due to the number of contributing neighbor
pairs in the summation in the formula above. And it depends on the
local defects surrounding the central atom, as described above. For
the {axes yes} case, the vector components are also unitless, since
diff --git a/doc/src/compute_chunk_atom.txt b/doc/src/compute_chunk_atom.txt
index e6083ad615..b1550875a4 100644
--- a/doc/src/compute_chunk_atom.txt
+++ b/doc/src/compute_chunk_atom.txt
@@ -459,7 +459,7 @@ The original chunk IDs (before renumbering) can be accessed by the
which outputs the original IDs as one of the columns in its global
output array. For example, using the "compute cluster/atom" command
discussed above, the original 5 unique chunk IDs might be atom IDs
-(27,4982,58374,857838,1000000). After compresion, these will be
+(27,4982,58374,857838,1000000). After compression, these will be
renumbered to (1,2,3,4,5). The original values (27,...,1000000) can
be output to a file by the "fix ave/chunk"_fix_ave_chunk.html command,
or by using the "fix ave/time"_fix_ave_time.html command in
@@ -538,7 +538,7 @@ is set to {yes}, an out-of-domain atom will have its chunk ID set to
to the first or last bin in both the radial and axis dimensions. If
{discard} is set to {mixed}, which is the default, the radial
dimension is treated the same as for {discard} = no. But for the axis
-dimensinon, it will only have its chunk ID set to the first or last
+dimension, it will only have its chunk ID set to the first or last
bin if bins extend to the simulation box boundary in the axis
dimension. This is the case if the {bound} keyword settings are
{lower} and {upper}, which is the default. If the {bound} keyword
diff --git a/doc/src/compute_coord_atom.txt b/doc/src/compute_coord_atom.txt
index 0367b2fe95..854a5778ec 100644
--- a/doc/src/compute_coord_atom.txt
+++ b/doc/src/compute_coord_atom.txt
@@ -70,7 +70,7 @@ The ID of the previously specified "compute
orientorder/atom"_compute_orientorder/atom command is specified as
{orientorderID}. The compute must invoke its {components} option to
calculate components of the {Ybar_lm} vector for each atoms, as
-described in its documenation. Note that orientorder/atom compute
+described in its documentation. Note that orientorder/atom compute
defines its own criteria for identifying neighboring atoms. If the
scalar product ({Ybar_lm(i)},{Ybar_lm(j)}), calculated by the
orientorder/atom compute is larger than the specified {threshold},
diff --git a/doc/src/compute_event_displace.txt b/doc/src/compute_event_displace.txt
index d1ebd72ae5..69532f1154 100644
--- a/doc/src/compute_event_displace.txt
+++ b/doc/src/compute_event_displace.txt
@@ -14,7 +14,7 @@ compute ID group-ID event/displace threshold :pre
ID, group-ID are documented in "compute"_compute.html command
event/displace = style name of this compute command
-threshold = minimum distance anyparticle must move to trigger an event (distance units) :ul
+threshold = minimum distance any particle must move to trigger an event (distance units) :ul
[Examples:]
diff --git a/doc/src/compute_global_atom.txt b/doc/src/compute_global_atom.txt
index f62efcff2e..3136b1fd18 100644
--- a/doc/src/compute_global_atom.txt
+++ b/doc/src/compute_global_atom.txt
@@ -55,7 +55,7 @@ M is the actual length of the input vector, then an output value of
0.0 is assigned to the atom.
An example of how this command is useful, is in the context of
-"chunks" which are static or dyanmic subsets of atoms. The "compute
+"chunks" which are static or dynamic subsets of atoms. The "compute
chunk/atom"_compute_chunk_atom.html command assigns unique chunk IDs
to each atom. It's output can be used as the {index} parameter for
this command. Various other computes with "chunk" in their style
@@ -192,7 +192,7 @@ reference thermodynamic keywords and various other attributes of
atoms, or invoke other computes, fixes, or variables when they are
evaluated, so this is a very general means of generating a vector of
global quantities which the {index} parameter will reference for
-assignement of global values to atoms.
+assignment of global values to atoms.
:line
@@ -207,7 +207,7 @@ See "Section 6.15"_Section_howto.html#howto_15 for an overview of
LAMMPS output options.
The per-atom vector or array values will be in whatever units the
-corresponsing input values are in.
+corresponding input values are in.
[Restrictions:] none
diff --git a/doc/src/compute_heat_flux.txt b/doc/src/compute_heat_flux.txt
index 720d26ce76..e8adac3deb 100644
--- a/doc/src/compute_heat_flux.txt
+++ b/doc/src/compute_heat_flux.txt
@@ -38,7 +38,7 @@ subtracted to a group of atoms.
The compute takes three arguments which are IDs of other
"computes"_compute.html. One calculates per-atom kinetic energy
({ke-ID}), one calculates per-atom potential energy ({pe-ID)}, and the
-third calcualtes per-atom stress ({stress-ID}).
+third calculates per-atom stress ({stress-ID}).
NOTE: These other computes should provide values for all the atoms in
the group this compute specifies. That means the other computes could
@@ -83,7 +83,7 @@ The heat flux can be output every so many timesteps (e.g. via the
post-processing operation, an autocorrelation can be performed, its
integral estimated, and the Green-Kubo formula above evaluated.
-The "fix ave/correlate"_fix_ave_correlate.html command can calclate
+The "fix ave/correlate"_fix_ave_correlate.html command can calculate
the autocorrelation. The trap() function in the
"variable"_variable.html command can calculate the integral.
diff --git a/doc/src/compute_inertia_chunk.txt b/doc/src/compute_inertia_chunk.txt
index 59a459b0d7..b0dbb12aea 100644
--- a/doc/src/compute_inertia_chunk.txt
+++ b/doc/src/compute_inertia_chunk.txt
@@ -35,7 +35,7 @@ chunk/atom"_compute_chunk_atom.html doc page and "Section
defined and examples of how they can be used to measure properties of
a system.
-This compute calculates the 6 components of the symmetric intertia
+This compute calculates the 6 components of the symmetric inertia
tensor for each chunk, ordered Ixx,Iyy,Izz,Ixy,Iyz,Ixz. The
calculation includes all effects due to atoms passing thru periodic
boundaries.
diff --git a/doc/src/compute_msd_nongauss.txt b/doc/src/compute_msd_nongauss.txt
index b92ceaacde..11a51229c7 100644
--- a/doc/src/compute_msd_nongauss.txt
+++ b/doc/src/compute_msd_nongauss.txt
@@ -48,7 +48,7 @@ others.
If the {com} option is set to {yes} then the effect of any drift in
the center-of-mass of the group of atoms is subtracted out before the
-displacment of each atom is calcluated.
+displacment of each atom is calculated.
See the "compute msd"_compute_msd.html doc page for further important
NOTEs, which also apply to this compute.
diff --git a/doc/src/compute_pair.txt b/doc/src/compute_pair.txt
index d2b34ed110..7a98709f89 100644
--- a/doc/src/compute_pair.txt
+++ b/doc/src/compute_pair.txt
@@ -52,7 +52,7 @@ corrections, even if they are enabled via the
Some pair styles tally additional quantities, e.g. a breakdown of
potential energy into a dozen or so components is tallied by the
-"pair_style reax"_pair_reax.html commmand. These values (1 or more)
+"pair_style reax"_pair_reax.html command. These values (1 or more)
are stored as a global vector by this compute. See the doc page for
"individual pair styles"_pair_style.html for info on these values.
diff --git a/doc/src/compute_pair_local.txt b/doc/src/compute_pair_local.txt
index 0d420b2202..0121210994 100644
--- a/doc/src/compute_pair_local.txt
+++ b/doc/src/compute_pair_local.txt
@@ -47,7 +47,7 @@ force cutoff distance for that interaction, as defined by the
"pair_style"_pair_style.html and "pair_coeff"_pair_coeff.html
commands.
-The value {dist} is the distance bewteen the pair of atoms.
+The value {dist} is the distance between the pair of atoms.
The value {eng} is the interaction energy for the pair of atoms.
diff --git a/doc/src/compute_pe_atom.txt b/doc/src/compute_pe_atom.txt
index 8e2fd17f24..6de3a79e5b 100644
--- a/doc/src/compute_pe_atom.txt
+++ b/doc/src/compute_pe_atom.txt
@@ -51,7 +51,7 @@ these terms is included in the pair energy, not the dihedral energy.
The KSpace contribution is calculated using the method in
"(Heyes)"_#Heyes for the Ewald method and a related method for PPPM,
as specified by the "kspace_style pppm"_kspace_style.html command.
-For PPPM, the calcluation requires 1 extra FFT each timestep that
+For PPPM, the calculation requires 1 extra FFT each timestep that
per-atom energy is calculated. This "document"_PDF/kspace.pdf
describes how the long-range per-atom energy calculation is performed.
diff --git a/doc/src/compute_pressure.txt b/doc/src/compute_pressure.txt
index 9e8c2a3b46..ae62859b17 100644
--- a/doc/src/compute_pressure.txt
+++ b/doc/src/compute_pressure.txt
@@ -89,7 +89,7 @@ commands"_compute.html to determine which ones include a bias.
Also note that the N in the first formula above is really
degrees-of-freedom divided by d = dimensionality, where the DOF value
-is calcluated by the temperature compute. See the various "compute
+is calculated by the temperature compute. See the various "compute
temperature"_compute.html styles for details.
A compute of this style with the ID of "thermo_press" is created when
diff --git a/doc/src/compute_property_chunk.txt b/doc/src/compute_property_chunk.txt
index 3bed9c0677..b9d4944b30 100644
--- a/doc/src/compute_property_chunk.txt
+++ b/doc/src/compute_property_chunk.txt
@@ -64,7 +64,7 @@ can only be used if the {compress} keyword was set to {yes} for the
"compute chunk/atom"_compute_chunk_atom.html command referenced by
chunkID. This means that the original chunk IDs (e.g. molecule IDs)
will have been compressed to remove chunk IDs with no atoms assigned
-to them. Thus a compresed chunk ID of 3 may correspond to an original
+to them. Thus a compressed chunk ID of 3 may correspond to an original
chunk ID (molecule ID in this case) of 415. The {id} attribute will
then be 415 for the 3rd chunk.
diff --git a/doc/src/compute_rigid_local.txt b/doc/src/compute_rigid_local.txt
index 5cdd58fbc2..077ad57d81 100644
--- a/doc/src/compute_rigid_local.txt
+++ b/doc/src/compute_rigid_local.txt
@@ -123,7 +123,7 @@ The {vx}, {vy}, {vz}, {fx}, {fy}, {fz} attributes are components of
the COM velocity and force on the COM of the body.
The {omegax}, {omegay}, and {omegaz} attributes are the angular
-velocity componennts of the body around its COM.
+velocity components of the body around its COM.
The {angmomx}, {angmomy}, and {angmomz} attributes are the angular
momentum components of the body around its COM.
diff --git a/doc/src/compute_smd_ulsph_num_neighs.txt b/doc/src/compute_smd_ulsph_num_neighs.txt
index 95af1b2163..adece93343 100644
--- a/doc/src/compute_smd_ulsph_num_neighs.txt
+++ b/doc/src/compute_smd_ulsph_num_neighs.txt
@@ -35,7 +35,7 @@ any command that uses per-particle values from a compute as input.
See "Section 6.15"_Section_howto.html#howto_15 for an overview of
LAMMPS output options.
-The per-particle values will be given dimentionless, see "units"_units.html.
+The per-particle values will be given dimensionless, see "units"_units.html.
[Restrictions:]
diff --git a/doc/src/compute_stress_atom.txt b/doc/src/compute_stress_atom.txt
index 3dc642da32..d09c8069cc 100644
--- a/doc/src/compute_stress_atom.txt
+++ b/doc/src/compute_stress_atom.txt
@@ -92,7 +92,7 @@ The KSpace contribution is calculated using the method in
"(Heyes)"_#Heyes for the Ewald method and by the methodology described
in "(Sirk)"_#Sirk for PPPM. The choice of KSpace solver is specified
by the "kspace_style pppm"_kspace_style.html command. Note that for
-PPPM, the calcluation requires 6 extra FFTs each timestep that
+PPPM, the calculation requires 6 extra FFTs each timestep that
per-atom stress is calculated. Thus it can significantly increase the
cost of the PPPM calculation if it is needed on a large fraction of
the simulation timesteps.
diff --git a/doc/src/compute_temp_chunk.txt b/doc/src/compute_temp_chunk.txt
index d565c95134..2e205a370b 100644
--- a/doc/src/compute_temp_chunk.txt
+++ b/doc/src/compute_temp_chunk.txt
@@ -44,7 +44,7 @@ compute 1 fluid temp/chunk molchunk bias tpartial adof 2.0 :pre
Define a computation that calculates the temperature of a group of
atoms that are also in chunks, after optionally subtracting out the
center-of-mass velocity of each chunk. By specifying optional values,
-it can also calulate the per-chunk temperature or energies of the
+it can also calculate the per-chunk temperature or energies of the
multiple chunks of atoms.
In LAMMPS, chunks are collections of atoms defined by a "compute
@@ -122,7 +122,7 @@ concept is somewhat ill-defined. In some cases, you can use the
{adof} and {cdof} keywords to adjust the calculated degress of freedom
appropriately, as explained below.
-Note that the per-chunk temperature calulated by this compute and the
+Note that the per-chunk temperature calculated by this compute and the
"fix ave/chunk temp"_fix_ave_chunk.html command can be different.
This compute calculates the temperature for each chunk for a single
snapshot. Fix ave/chunk can do that but can also time average those
diff --git a/doc/src/dump.txt b/doc/src/dump.txt
index 5f8ee1ee88..5898f4ed03 100644
--- a/doc/src/dump.txt
+++ b/doc/src/dump.txt
@@ -545,7 +545,7 @@ that the coordinate values may be far outside the box bounds printed
with the snapshot. Using {xsu}, {ysu}, {zsu} is similar to using
{xu}, {yu}, {zu}, except that the unwrapped coordinates are scaled by
the box size. Atoms that have passed through a periodic boundary will
-have the corresponding cooordinate increased or decreased by 1.0.
+have the corresponding coordinate increased or decreased by 1.0.
The image flags can be printed directly using the {ix}, {iy}, {iz}
attributes. For periodic dimensions, they specify which image of the
diff --git a/doc/src/dump_custom_vtk.txt b/doc/src/dump_custom_vtk.txt
index b84817327b..f15d20f849 100644
--- a/doc/src/dump_custom_vtk.txt
+++ b/doc/src/dump_custom_vtk.txt
@@ -211,7 +211,7 @@ charge.
There are several options for outputting atom coordinates. The {x},
{y}, {z} attributes are used to write atom coordinates "unscaled", in
the appropriate distance "units"_units.html (Angstroms, sigma, etc).
-Additionaly, you can use {xs}, {ys}, {zs} if you want to also save the
+Additionally, you can use {xs}, {ys}, {zs} if you want to also save the
coordinates "scaled" to the box size, so that each value is 0.0 to
1.0. If the simulation box is triclinic (tilted), then all atom
coords will still be between 0.0 and 1.0. Use {xu}, {yu}, {zu} if you
@@ -224,7 +224,7 @@ values may be far outside the box bounds printed with the snapshot.
Using {xsu}, {ysu}, {zsu} is similar to using {xu}, {yu}, {zu}, except
that the unwrapped coordinates are scaled by the box size. Atoms that
have passed through a periodic boundary will have the corresponding
-cooordinate increased or decreased by 1.0.
+coordinate increased or decreased by 1.0.
The image flags can be printed directly using the {ix}, {iy}, {iz}
attributes. For periodic dimensions, they specify which image of the
diff --git a/doc/src/dump_image.txt b/doc/src/dump_image.txt
index 819cdbd36c..a1fc527ec4 100644
--- a/doc/src/dump_image.txt
+++ b/doc/src/dump_image.txt
@@ -99,7 +99,7 @@ included in the image or movie and how it appears. A series of such
images can easily be manually converted into an animated movie of your
simulation or the process can be automated without writing the
intermediate files using the dump movie style; see further details
-below. Other dump styles store snapshots of numerical data asociated
+below. Other dump styles store snapshots of numerical data associated
with atoms in various formats, as discussed on the "dump"_dump.html
doc page.
@@ -261,7 +261,7 @@ the input script defines, e.g. Angstroms.
The {bond} keyword allows to you to alter how bonds are drawn. A bond
is only drawn if both atoms in the bond are being drawn due to being
in the specified group and due to other selection criteria
-(e.g. region, threshhold settings of the
+(e.g. region, threshold settings of the
"dump_modify"_dump_modify.html command). By default, bonds are drawn
if they are defined in the input data file as read by the
"read_data"_read_data.html command. Using {none} for both the bond
@@ -356,7 +356,7 @@ is used to define body particles with internal state
body style. If this keyword is not used, such particles will be drawn
as spheres, the same as if they were regular atoms.
-The "body"_body.html doc page descibes the body styles LAMMPS
+The "body"_body.html doc page describes the body styles LAMMPS
currently supports, and provides more details as to the kind of body
particles they represent and how they are drawn by this dump image
command. For all the body styles, individual atoms can be either a
diff --git a/doc/src/dump_modify.txt b/doc/src/dump_modify.txt
index 0cf30e3c92..7eafffa24c 100644
--- a/doc/src/dump_modify.txt
+++ b/doc/src/dump_modify.txt
@@ -470,7 +470,7 @@ stress of atoms whose energy is above some threshold.
If an atom-style variable is used as the attribute, then it can
produce continuous numeric values or effective Boolean 0/1 values
-which may be useful for the comparision operator. Boolean values can
+which may be useful for the comparison operator. Boolean values can
be generated by variable formulas that use comparison or Boolean math
operators or special functions like gmask() and rmask() and grmask().
See the "variable"_variable.html command doc page for details.
diff --git a/doc/src/fix_ave_chunk.txt b/doc/src/fix_ave_chunk.txt
index 0238d9b4f2..a1fe6ae6d0 100644
--- a/doc/src/fix_ave_chunk.txt
+++ b/doc/src/fix_ave_chunk.txt
@@ -67,7 +67,7 @@ fix 1 flow ave/chunk 100 5 1000 binchunk density/mass ave running :pre
[NOTE:]
-If you are trying to replace a deprectated fix ave/spatial command
+If you are trying to replace a deprecated fix ave/spatial command
with the newer, more flexible fix ave/chunk and "compute
chunk/atom"_compute_chunk_atom.html commands, you simply need to split
the fix ave/spatial arguments across the two new commands. For
@@ -189,7 +189,7 @@ chunk/atom"_compute_chunk_atom.html command must remain constant. If
the {ave} keyword is set to {running} or {window} then {Nchunk} must
remain constant for the duration of the simulation. This fix forces
the chunk/atom compute specified by chunkID to hold {Nchunk} constant
-for the appropriate time windows, by not allowing it to re-calcualte
+for the appropriate time windows, by not allowing it to re-calculate
{Nchunk}, which can also affect how it assigns chunk IDs to atoms.
More details are given on the "compute
chunk/atom"_compute_chunk_atom.html doc page.
@@ -410,7 +410,7 @@ chunk/atom"_compute_chunk_atom.html command supports them. The OrigID
column is only used if the {compress} keyword was set to {yes} for the
"compute chunk/atom"_compute_chunk_atom.html command. This means that
the original chunk IDs (e.g. molecule IDs) will have been compressed
-to remove chunk IDs with no atoms assigned to them. Thus a compresed
+to remove chunk IDs with no atoms assigned to them. Thus a compressed
chunk ID of 3 may correspond to an original chunk ID or molecule ID of
415. The OrigID column will list 415 for the 3rd chunk.
diff --git a/doc/src/fix_ave_correlate.txt b/doc/src/fix_ave_correlate.txt
index bd097f291a..6ae9fe53b6 100644
--- a/doc/src/fix_ave_correlate.txt
+++ b/doc/src/fix_ave_correlate.txt
@@ -64,7 +64,7 @@ fix 1 all ave/correlate 1 50 10000 c_thermo_press\[*\]
[Description:]
Use one or more global scalar values as inputs every few timesteps,
-calculate time correlations bewteen them at varying time intervals,
+calculate time correlations between them at varying time intervals,
and average the correlation data over longer timescales. The
resulting correlation values can be time integrated by
"variables"_variable.html or used by other "output
diff --git a/doc/src/fix_ave_time.txt b/doc/src/fix_ave_time.txt
index 569cdc96cf..b04f17e460 100644
--- a/doc/src/fix_ave_time.txt
+++ b/doc/src/fix_ave_time.txt
@@ -33,7 +33,7 @@ keyword = {mode} or {file} or {ave} or {start} or {off} or {overwrite} or {title
vector = all input values are global vectors or global arrays
{ave} args = {one} or {running} or {window M}
one = output a new average value every Nfreq steps
- running = output cummulative average of all previous Nfreq steps
+ running = output cumulative average of all previous Nfreq steps
window M = output average of M most recent Nfreq steps
{start} args = Nstart
Nstart = start averaging on this timestep
@@ -223,7 +223,7 @@ output as-is without further averaging.
If the {ave} setting is {running}, then the values produced on
timesteps that are multiples of {Nfreq} are summed and averaged in a
-cummulative sense before being output. Each output value is thus the
+cumulative sense before being output. Each output value is thus the
average of the value produced on that timestep with all preceding
values. This running average begins when the fix is defined; it can
only be restarted by deleting the fix via the "unfix"_unfix.html
diff --git a/doc/src/fix_balance.txt b/doc/src/fix_balance.txt
index 8473fa8152..16ea1d39f9 100644
--- a/doc/src/fix_balance.txt
+++ b/doc/src/fix_balance.txt
@@ -15,12 +15,12 @@ fix ID group-ID balance Nfreq thresh style args keyword args ... :pre
ID, group-ID are documented in "fix"_fix.html command :ulb,l
balance = style name of this fix command :l
Nfreq = perform dynamic load balancing every this many steps :l
-thresh = imbalance threshhold that must be exceeded to perform a re-balance :l
+thresh = imbalance threshold that must be exceeded to perform a re-balance :l
style = {shift} or {rcb} :l
shift args = dimstr Niter stopthresh
dimstr = sequence of letters containing "x" or "y" or "z", each not more than once
Niter = # of times to iterate within each dimension of dimstr sequence
- stopthresh = stop balancing when this imbalance threshhold is reached
+ stopthresh = stop balancing when this imbalance threshold is reached
{rcb} args = none :pre
zero or more keyword/arg pairs may be appended :l
keyword = {weight} or {out} :l
@@ -78,7 +78,7 @@ The balancing can be performed with or without per-particle weighting.
With no weighting, the balancing attempts to assign an equal number of
particles to each processor. With weighting, the balancing attempts
to assign an equal aggregate computational weight to each processor,
-which typically inducces a diffrent number of atoms assigned to each
+which typically inducces a different number of atoms assigned to each
processor.
NOTE: The weighting options listed above are documented with the
@@ -249,7 +249,7 @@ typically be positioned to better than 1 part in 1000 accuracy
be accurate to better than 1 part in a million. Thus there is no need
to set {Niter} to a large value. This is especially true if you are
rebalancing often enough that each time you expect only an incremental
-adjustement in the cutting planes is necessary. LAMMPS will check if
+adjustment in the cutting planes is necessary. LAMMPS will check if
the threshold accuracy is reached (in a dimension) is less iterations
than {Niter} and exit early.
diff --git a/doc/src/fix_bond_break.txt b/doc/src/fix_bond_break.txt
index 98ba472327..d27246872c 100644
--- a/doc/src/fix_bond_break.txt
+++ b/doc/src/fix_bond_break.txt
@@ -122,7 +122,7 @@ by this fix are "intensive".
These are the 2 quantities:
(1) # of bonds broken on the most recent breakage timestep
-(2) cummulative # of bonds broken :ul
+(2) cumulative # of bonds broken :ul
No parameter of this fix can be used with the {start/stop} keywords of
the "run"_run.html command. This fix is not invoked during "energy
diff --git a/doc/src/fix_bond_create.txt b/doc/src/fix_bond_create.txt
index 3d00b60844..949eb7e7e3 100644
--- a/doc/src/fix_bond_create.txt
+++ b/doc/src/fix_bond_create.txt
@@ -218,7 +218,7 @@ by this fix are "intensive".
These are the 2 quantities:
(1) # of bonds created on the most recent creation timestep
-(2) cummulative # of bonds created :ul
+(2) cumulative # of bonds created :ul
No parameter of this fix can be used with the {start/stop} keywords of
the "run"_run.html command. This fix is not invoked during "energy
diff --git a/doc/src/fix_bond_swap.txt b/doc/src/fix_bond_swap.txt
index 38c5e17c60..5290abe185 100644
--- a/doc/src/fix_bond_swap.txt
+++ b/doc/src/fix_bond_swap.txt
@@ -81,7 +81,7 @@ by this processor on this timestep.
The criterion for matching molecule IDs is how bond swaps performed by
this fix conserve chain length. To use this features you must setup
the molecule IDs for your polymer chains in a certain way, typically
-in the data file, read by the "read_data"_read_data.html comand.
+in the data file, read by the "read_data"_read_data.html command.
Consider a system of 6-mer chains. You have 2 choices. If the
molecule IDs for monomers on each chain are set to 1,2,3,4,5,6 then
swaps will conserve chain length. For a particular momoner there will
@@ -124,7 +124,7 @@ the "thermo_style"_thermo_style.html command) with ID = {thermo_temp}.
This means you can change the attributes of this fix's temperature
(e.g. its degrees-of-freedom) via the
"compute_modify"_compute_modify.html command or print this temperature
-during thermodyanmic output via the "thermo_style
+during thermodynamic output via the "thermo_style
custom"_thermo_style.html command using the appropriate compute-ID.
It also means that changing attributes of {thermo_temp} will have no
effect on this fix.
@@ -151,8 +151,8 @@ the Boltzmann criterion.
This fix computes two statistical quantities as a global 2-vector of
output, which can be accessed by various "output
commands"_Section_howto.html#howto_15. The first component of the
-vector is the cummulative number of swaps performed by all processors.
-The second component of the vector is the cummulative number of swaps
+vector is the cumulative number of swaps performed by all processors.
+The second component of the vector is the cumulative number of swaps
attempted (whether accepted or rejected). Note that a swap "attempt"
only occurs when swap partners meeting the criteria described above
are found on a particular timestep. The vector values calculated by
diff --git a/doc/src/fix_box_relax.txt b/doc/src/fix_box_relax.txt
index 96701b170e..e775074bcc 100644
--- a/doc/src/fix_box_relax.txt
+++ b/doc/src/fix_box_relax.txt
@@ -103,7 +103,7 @@ far. In all cases, the particle positions at each iteration are
unaffected by the chosen value, except that all particles are
displaced by the same amount, different on each iteration.
-NOTE: Appling an external pressure to tilt dimensions {xy}, {xz}, {yz}
+NOTE: Applying an external pressure to tilt dimensions {xy}, {xz}, {yz}
can sometimes result in arbitrarily large values of the tilt factors,
i.e. a dramatically deformed simulation box. This typically indicates
that there is something badly wrong with how the simulation was
diff --git a/doc/src/fix_colvars.txt b/doc/src/fix_colvars.txt
index e2be03f46b..e48dedacd9 100644
--- a/doc/src/fix_colvars.txt
+++ b/doc/src/fix_colvars.txt
@@ -59,7 +59,7 @@ always apply to the entire system and there can only be one instance
of the colvars fix at a time. The colvars fix will only communicate
the minimum information necessary and the colvars library supports
multiple, completely independent collective variables, so there is
-no restriction to functionaliry by limiting the number of colvars fixes.
+no restriction to functionality by limiting the number of colvars fixes.
The {input} keyword allows to specify a state file that would contain
the restart information required in order to continue a calculation from
@@ -100,7 +100,7 @@ output"_thermo_style.html.
This fix computes a global scalar which can be accessed by various
"output commands"_Section_howto.html#howto_15. The scalar is the
-cummulative energy change due to this fix. The scalar value
+cumulative energy change due to this fix. The scalar value
calculated by this fix is "extensive".
[Restrictions:]
diff --git a/doc/src/fix_controller.txt b/doc/src/fix_controller.txt
index a19f42c77c..3d590cd3e1 100644
--- a/doc/src/fix_controller.txt
+++ b/doc/src/fix_controller.txt
@@ -175,7 +175,7 @@ equal-style versus internal-style variable interchangeably.
[Restart, fix_modify, output, run start/stop, minimize info:]
-Currenlty, no information about this fix is written to "binary restart
+Currently, no information about this fix is written to "binary restart
files"_restart.html. None of the "fix_modify"_fix_modify.html options
are relevant to this fix.
diff --git a/doc/src/fix_eos_table.txt b/doc/src/fix_eos_table.txt
index 8fc72bbdad..42778d7978 100644
--- a/doc/src/fix_eos_table.txt
+++ b/doc/src/fix_eos_table.txt
@@ -17,7 +17,7 @@ eos/table = style name of this fix command
style = {linear} = method of interpolation
file = filename containing the tabulated equation of state
N = use N values in {linear} tables
-keyword = name of table keyword correponding to table file :ul
+keyword = name of table keyword corresponding to table file :ul
[Examples:]
diff --git a/doc/src/fix_eos_table_rx.txt b/doc/src/fix_eos_table_rx.txt
index 749642f57c..e8d515e1f3 100644
--- a/doc/src/fix_eos_table_rx.txt
+++ b/doc/src/fix_eos_table_rx.txt
@@ -17,7 +17,7 @@ eos/table/rx = style name of this fix command
style = {linear} = method of interpolation
file1 = filename containing the tabulated equation of state
N = use N values in {linear} tables
-keyword = name of table keyword correponding to table file
+keyword = name of table keyword corresponding to table file
file2 = filename containing the heats of formation of each species (optional)
deltaHf = heat of formation for a single species in energy units (optional)
energyCorr = energy correction in energy units (optional)
diff --git a/doc/src/fix_evaporate.txt b/doc/src/fix_evaporate.txt
index 0243cbe977..ace1fae63a 100644
--- a/doc/src/fix_evaporate.txt
+++ b/doc/src/fix_evaporate.txt
@@ -74,7 +74,7 @@ are relevant to this fix.
This fix computes a global scalar, which can be accessed by various
"output commands"_Section_howto.html#howto_15. The scalar is the
-cummulative number of deleted atoms. The scalar value calculated by
+cumulative number of deleted atoms. The scalar value calculated by
this fix is "intensive".
No parameter of this fix can be used with the {start/stop} keywords of
diff --git a/doc/src/fix_gle.txt b/doc/src/fix_gle.txt
index b6a1a7500a..ca7625e2d0 100644
--- a/doc/src/fix_gle.txt
+++ b/doc/src/fix_gle.txt
@@ -116,7 +116,7 @@ output"_thermo_style.html.
This fix computes a global scalar which can be accessed by various
"output commands"_Section_howto.html#howto_15. The scalar is the
-cummulative energy change due to this fix. The scalar value
+cumulative energy change due to this fix. The scalar value
calculated by this fix is "extensive".
[Restrictions:]
diff --git a/doc/src/fix_langevin.txt b/doc/src/fix_langevin.txt
index b387117d83..a3d0fb7eaa 100644
--- a/doc/src/fix_langevin.txt
+++ b/doc/src/fix_langevin.txt
@@ -307,7 +307,7 @@ setting the {tally} keyword to {yes}.
This fix computes a global scalar which can be accessed by various
"output commands"_Section_howto.html#howto_15. The scalar is the
-cummulative energy change due to this fix. The scalar value
+cumulative energy change due to this fix. The scalar value
calculated by this fix is "extensive". Note that calculation of this
quantity requires setting the {tally} keyword to {yes}.
diff --git a/doc/src/fix_langevin_eff.txt b/doc/src/fix_langevin_eff.txt
index 4b09d695b9..d3112d529d 100644
--- a/doc/src/fix_langevin_eff.txt
+++ b/doc/src/fix_langevin_eff.txt
@@ -80,7 +80,7 @@ setting the {tally} keyword to {yes}.
This fix computes a global scalar which can be accessed by various
"output commands"_Section_howto.html#howto_15. The scalar is the
-cummulative energy change due to this fix. The scalar value
+cumulative energy change due to this fix. The scalar value
calculated by this fix is "extensive". Note that calculation of this
quantity requires setting the {tally} keyword to {yes}.
diff --git a/doc/src/fix_move.txt b/doc/src/fix_move.txt
index 9bbe252c1f..83af5b273a 100644
--- a/doc/src/fix_move.txt
+++ b/doc/src/fix_move.txt
@@ -58,7 +58,7 @@ nve"_fix_nve.html command). It is up to you to decide whether
periodic boundaries are appropriate with the kind of atom motion you
are prescribing with this fix.
-NOTE: As dicsussed below, atoms are moved relative to their initial
+NOTE: As discussed below, atoms are moved relative to their initial
position at the time the fix is specified. These initial coordinates
are stored by the fix in "unwrapped" form, by using the image flags
associated with each atom. See the "dump custom"_dump.html command
diff --git a/doc/src/fix_mscg.txt b/doc/src/fix_mscg.txt
index c613a598fe..6bd0876537 100644
--- a/doc/src/fix_mscg.txt
+++ b/doc/src/fix_mscg.txt
@@ -108,7 +108,7 @@ LAMMPS"_Section_start.html#start_3 section for more info.
The MS-CG library uses C++11, which may not be supported by older
compilers. The MS-CG library also has some additional numeric library
-dependencies, which are describd in its documentation.
+dependencies, which are described in its documentation.
Currently, the MS-CG library is not setup to run in parallel with MPI,
so this fix can only be used in a serial LAMMPS build and run
diff --git a/doc/src/fix_nve_asphere_noforce.txt b/doc/src/fix_nve_asphere_noforce.txt
index 98cf75999b..5f1b271546 100644
--- a/doc/src/fix_nve_asphere_noforce.txt
+++ b/doc/src/fix_nve_asphere_noforce.txt
@@ -25,7 +25,7 @@ Perform updates of position and orientation, but not velocity or
angular momentum for atoms in the group each timestep. In other
words, the force and torque on the atoms is ignored and their velocity
and angular momentum are not updated. The atom velocities and
-angularm momenta are used to update their positions and orientation.
+angular momenta are used to update their positions and orientation.
This is useful as an implicit time integrator for Fast Lubrication
Dynamics, since the velocity and angular momentum are updated by the
diff --git a/doc/src/fix_nvt_sllod_eff.txt b/doc/src/fix_nvt_sllod_eff.txt
index 2d772ba6be..e92d1640cd 100644
--- a/doc/src/fix_nvt_sllod_eff.txt
+++ b/doc/src/fix_nvt_sllod_eff.txt
@@ -35,7 +35,7 @@ radial velocity of electrons are also updated and thermostatted.
Likewise the temperature calculated by the fix, using the compute it
creates (as discussed in the "fix nvt, npt, and nph"_fix_nh.html doc
page), is performed with a "compute
-temp/deform/eff"_compute_temp_deform_eff.html commmand that includes
+temp/deform/eff"_compute_temp_deform_eff.html command that includes
the eFF contribution to the temperature from the electron radial
velocity.
diff --git a/doc/src/fix_phonon.txt b/doc/src/fix_phonon.txt
index 10a0c95c80..0f399f187b 100644
--- a/doc/src/fix_phonon.txt
+++ b/doc/src/fix_phonon.txt
@@ -183,7 +183,7 @@ This fix requires LAMMPS be built with an FFT library. See the
[Default:]
-The option defaults are sysdim = the same dimemsion as specified by
+The option defaults are sysdim = the same dimension as specified by
the "dimension"_dimension.html command, and nasr = 20.
:line
diff --git a/doc/src/fix_pour.txt b/doc/src/fix_pour.txt
index 90ed84a8bf..f1487c3aa7 100644
--- a/doc/src/fix_pour.txt
+++ b/doc/src/fix_pour.txt
@@ -175,7 +175,7 @@ some other way.
The {vol} option specifies what volume fraction of the insertion
volume will be filled with particles. For particles with a size
specified by the {diam range} keyword, they are assumed to all be of
-maximum diamter {Dhi} for purposes of computing their contribution to
+maximum diameter {Dhi} for purposes of computing their contribution to
the volume fraction.
The higher the volume fraction value, the more particles are inserted
diff --git a/doc/src/fix_qeq.txt b/doc/src/fix_qeq.txt
index 951a82709e..049c3d8e2a 100644
--- a/doc/src/fix_qeq.txt
+++ b/doc/src/fix_qeq.txt
@@ -71,7 +71,7 @@ or AMBER, can have a strong effect on energies and forces, and
produces a different model than the published versions.
NOTE: The "fix qeq/comb"_fix_qeq_comb.html command must still be used
-to perform charge equliibration with the "COMB
+to perform charge equilibration with the "COMB
potential"_pair_comb.html. The "fix qeq/reax"_fix_qeq_reax.html
command can be used to perform charge equilibration with the "ReaxFF
force field"_pair_reax_c.html, although fix qeq/shielded yields the
diff --git a/doc/src/fix_qeq_reax.txt b/doc/src/fix_qeq_reax.txt
index 74f944db66..a26934dfb4 100644
--- a/doc/src/fix_qeq_reax.txt
+++ b/doc/src/fix_qeq_reax.txt
@@ -33,7 +33,7 @@ typically used in conjunction with the ReaxFF force field model as
implemented in the "pair_style reax/c"_pair_reax_c.html command, but
it can be used with any potential in LAMMPS, so long as it defines and
uses charges on each atom. The "fix qeq/comb"_fix_qeq_comb.html
-command should be used to perform charge equliibration with the "COMB
+command should be used to perform charge equilibration with the "COMB
potential"_pair_comb.html. For more technical details about the
charge equilibration performed by fix qeq/reax, see the
"(Aktulga)"_#Aktulga paper.
diff --git a/doc/src/fix_reax_bonds.txt b/doc/src/fix_reax_bonds.txt
index a85e140b62..1fd1b3ca5a 100644
--- a/doc/src/fix_reax_bonds.txt
+++ b/doc/src/fix_reax_bonds.txt
@@ -34,7 +34,7 @@ written to {filename} on timesteps that are multiples of {Nevery},
including timestep 0. For time-averaged chemical species analysis,
please see the "fix reaxc/c/species"_fix_reaxc_species.html command.
-The format of the output file should be self-explantory.
+The format of the output file should be self-explanatory.
:line
diff --git a/doc/src/fix_shake.txt b/doc/src/fix_shake.txt
index 335d3a78e9..a860aad128 100644
--- a/doc/src/fix_shake.txt
+++ b/doc/src/fix_shake.txt
@@ -119,7 +119,7 @@ contribution to the pressure of the system (virial) is also accounted
for.
NOTE: This command works by using the current forces on atoms to
-caculate an additional constraint force which when added will leave
+calculate an additional constraint force which when added will leave
the atoms in positions that satisfy the SHAKE constraints (e.g. bond
length) after the next time integration step. If you define fixes
(e.g. "fix efield"_fix_efield.html) that add additional force to the
@@ -133,7 +133,7 @@ forces (to atoms that fix shake operates on).
The {mol} keyword should be used when other commands, such as "fix
deposit"_fix_deposit.html or "fix pour"_fix_pour.html, add molecules
-on-the-fly during a simulation, and you wish to contrain the new
+on-the-fly during a simulation, and you wish to constrain the new
molecules via SHAKE. You specify a {template-ID} previously defined
using the "molecule"_molecule.html command, which reads a file that
defines the molecule. You must use the same {template-ID} that the
@@ -210,7 +210,7 @@ which can lead to poor energy conservation. You can test for this in
your system by running a constant NVE simulation with a particular set
of SHAKE parameters and monitoring the energy versus time.
-SHAKE or RATTLE should not be used to contrain an angle at 180 degrees
+SHAKE or RATTLE should not be used to constrain an angle at 180 degrees
(e.g. linear CO2 molecule). This causes numeric difficulties.
[Related commands:] none
diff --git a/doc/src/fix_srd.txt b/doc/src/fix_srd.txt
index 13519ecfad..a432b511d1 100644
--- a/doc/src/fix_srd.txt
+++ b/doc/src/fix_srd.txt
@@ -182,7 +182,7 @@ can be used to scale down their effective collision radius by an
amount {rfactor}, so that SRD particle will only collide with one big
particle at a time. For example, in a Lennard-Jones system at a
temperature of 1.0 (in reduced LJ units), the minimum separation
-bewteen two big particles is as small as about 0.88 sigma. Thus an
+between two big particles is as small as about 0.88 sigma. Thus an
{rfactor} value of 0.85 should prevent dual collisions.
The {bounce} keyword can be used to limit the maximum number of
@@ -241,7 +241,7 @@ box shape changes. This re-binning is always done so as to fit an
integer number of bins in the current box dimension, whether it be a
fixed, shrink-wrapped, or periodic boundary, as set by the
"boundary"_boundary.html command. If the box size or shape changes,
-then the size of the search bins must be recalculated avery
+then the size of the search bins must be recalculated every
reneighboring. Note that changing the SRD bin size may alter the
properties of the SRD fluid, such as its viscosity.
@@ -345,15 +345,15 @@ commands"_Section_howto.html#howto_15. The vector values calculated
by this fix are "intensive", meaning they do not scale with the size
of the simulation. Technically, the first 8 do scale with the size of
the simulation, but treating them as intensive means they are not
-scaled when printed as part of thermodyanmic output.
+scaled when printed as part of thermodynamic output.
These are the 12 quantities. All are values for the current timestep,
except for quantity 5 and the last three, each of which are
-cummulative quantities since the beginning of the run.
+cumulative quantities since the beginning of the run.
(1) # of SRD/big collision checks performed
(2) # of SRDs which had a collision
-(3) # of SRD/big colllisions (including multiple bounces)
+(3) # of SRD/big collisions (including multiple bounces)
(4) # of SRD particles inside a big particle
(5) # of SRD particles whose velocity was rescaled to be < Vmax
(6) # of bins for collision searching
diff --git a/doc/src/fix_temp_berendsen.txt b/doc/src/fix_temp_berendsen.txt
index 177591d8e7..9c1dd538da 100644
--- a/doc/src/fix_temp_berendsen.txt
+++ b/doc/src/fix_temp_berendsen.txt
@@ -127,7 +127,7 @@ output"_thermo_style.html.
This fix computes a global scalar which can be accessed by various
"output commands"_Section_howto.html#howto_15. The scalar is the
-cummulative energy change due to this fix. The scalar value
+cumulative energy change due to this fix. The scalar value
calculated by this fix is "extensive".
This fix can ramp its target temperature over multiple runs, using the
diff --git a/doc/src/fix_temp_csvr.txt b/doc/src/fix_temp_csvr.txt
index 7e53926516..c356070038 100644
--- a/doc/src/fix_temp_csvr.txt
+++ b/doc/src/fix_temp_csvr.txt
@@ -136,7 +136,7 @@ These fixes are not invoked during "energy minimization"_minimize.html.
These fixes compute a global scalar which can be accessed by various
"output commands"_Section_howto.html#howto_15. The scalar is the
-cummulative energy change due to the fix. The scalar value
+cumulative energy change due to the fix. The scalar value
calculated by this fix is "extensive".
[Restrictions:]
diff --git a/doc/src/fix_temp_rescale.txt b/doc/src/fix_temp_rescale.txt
index f38d20d0d7..7369fca184 100644
--- a/doc/src/fix_temp_rescale.txt
+++ b/doc/src/fix_temp_rescale.txt
@@ -134,7 +134,7 @@ output"_thermo_style.html.
This fix computes a global scalar which can be accessed by various
"output commands"_Section_howto.html#howto_15. The scalar is the
-cummulative energy change due to this fix. The scalar value
+cumulative energy change due to this fix. The scalar value
calculated by this fix is "extensive".
This fix can ramp its target temperature over multiple runs, using the
diff --git a/doc/src/fix_temp_rescale_eff.txt b/doc/src/fix_temp_rescale_eff.txt
index c39651e05c..f87c1a2192 100644
--- a/doc/src/fix_temp_rescale_eff.txt
+++ b/doc/src/fix_temp_rescale_eff.txt
@@ -52,7 +52,7 @@ output"_thermo_style.html.
This fix computes a global scalar which can be accessed by various
"output commands"_Section_howto.html#howto_15. The scalar is the
-cummulative energy change due to this fix. The scalar value
+cumulative energy change due to this fix. The scalar value
calculated by this fix is "extensive".
This fix can ramp its target temperature over multiple runs, using the
diff --git a/doc/src/fix_thermal_conductivity.txt b/doc/src/fix_thermal_conductivity.txt
index 9038a12709..a807feaec7 100644
--- a/doc/src/fix_thermal_conductivity.txt
+++ b/doc/src/fix_thermal_conductivity.txt
@@ -109,10 +109,10 @@ are relevant to this fix.
This fix computes a global scalar which can be accessed by various
"output commands"_Section_howto.html#howto_15. The scalar is the
-cummulative kinetic energy transferred between the bottom and middle
+cumulative kinetic energy transferred between the bottom and middle
of the simulation box (in the {edim} direction) is stored as a scalar
quantity by this fix. This quantity is zeroed when the fix is defined
-and accumlates thereafter, once every N steps. The units of the
+and accumulates thereafter, once every N steps. The units of the
quantity are energy; see the "units"_units.html command for details.
The scalar value calculated by this fix is "intensive".
@@ -141,7 +141,7 @@ of this idea.
When running a simulation with large, massive particles or molecules
in a background solvent, you may want to only exchange kinetic energy
-bewteen solvent particles.
+between solvent particles.
[Related commands:]
diff --git a/doc/src/fix_viscosity.txt b/doc/src/fix_viscosity.txt
index 8b9c0d3cb6..520d8b593a 100644
--- a/doc/src/fix_viscosity.txt
+++ b/doc/src/fix_viscosity.txt
@@ -116,10 +116,10 @@ are relevant to this fix.
This fix computes a global scalar which can be accessed by various
"output commands"_Section_howto.html#howto_15. The scalar is the
-cummulative momentum transferred between the bottom and middle of the
+cumulative momentum transferred between the bottom and middle of the
simulation box (in the {pdim} direction) is stored as a scalar
quantity by this fix. This quantity is zeroed when the fix is defined
-and accumlates thereafter, once every N steps. The units of the
+and accumulates thereafter, once every N steps. The units of the
quantity are momentum = mass*velocity. The scalar value calculated by
this fix is "intensive".
@@ -147,7 +147,7 @@ See the "Maginn paper"_#Maginn for an example of using this algorithm
in a computation of alcohol molecule properties.
When running a simulation with large, massive particles or molecules
-in a background solvent, you may want to only exchange momenta bewteen
+in a background solvent, you may want to only exchange momenta between
solvent particles.
[Related commands:]
diff --git a/doc/src/group.txt b/doc/src/group.txt
index ab975af756..afa218c5a3 100644
--- a/doc/src/group.txt
+++ b/doc/src/group.txt
@@ -144,7 +144,7 @@ or exclude from a group.
For example, these lines define a variable "eatom" that calculates the
potential energy of each atom and includes it in the group if its
-potential energy is above the threshhold value -3.0.
+potential energy is above the threshold value -3.0.
compute 1 all pe/atom
compute 2 all reduce sum c_1
@@ -165,7 +165,7 @@ group command invokes it. Because the eatom variable computes the
per-atom energy via the pe/atom compute, it will only be current if a
run has been performed which evaluated pairwise energies, and the
pe/atom compute was actually invoked during the run. Printing the
-thermodyanmic info for compute 2 insures that this is the case, since
+thermodynamic info for compute 2 insures that this is the case, since
it sums the pe/atom compute values (in the reduce compute) to output
them to the screen. See the "Variable Accuracy" section of the
"variable"_variable.html doc page for more details on insuring that
diff --git a/doc/src/if.txt b/doc/src/if.txt
index aa93c73790..c678f4aa77 100644
--- a/doc/src/if.txt
+++ b/doc/src/if.txt
@@ -37,7 +37,7 @@ if "$\{eng\} > $\{eng_previous\}" then "jump file1" else "jump file2" :pre
[Description:]
This command provides an if-then-else capability within an input
-script. A Boolean expression is evaluted and the result is TRUE or
+script. A Boolean expression is evaluated and the result is TRUE or
FALSE. Note that as in the examples above, the expression can contain
variables, as defined by the "variable"_variable.html command, which
will be evaluated as part of the expression. Thus a user-defined
diff --git a/doc/src/improper_ring.txt b/doc/src/improper_ring.txt
index d1eca6d5d9..705b1cf742 100644
--- a/doc/src/improper_ring.txt
+++ b/doc/src/improper_ring.txt
@@ -36,7 +36,7 @@ j,k, and l.
The "ring" improper style implements the improper potential introduced
by Destree et al., in Equation (9) of "(Destree)"_#Destree. This
potential does not affect small amplitude vibrations but is used in an
-ad-hoc way to prevent the onset of accidentially large amplitude
+ad-hoc way to prevent the onset of accidentally large amplitude
fluctuations leading to the occurrence of a planar conformation of the
three bonds i-j, j-k and j-l, an intermediate conformation toward the
chiral inversion of a methine carbon. In the "Impropers" section of
diff --git a/doc/src/info.txt b/doc/src/info.txt
index 605dafa851..0b761ccc15 100644
--- a/doc/src/info.txt
+++ b/doc/src/info.txt
@@ -94,7 +94,7 @@ The {time} category prints the accumulated CPU and wall time for the
process that writes output (usually MPI rank 0).
The {configuration} command prints some information about the LAMMPS
-version and architection and OS it is run on. Where supported, also
+version and architecture and OS it is run on. Where supported, also
information about the memory consumption provided by the OS is
reported.
diff --git a/doc/src/kspace_modify.txt b/doc/src/kspace_modify.txt
index 013e61965f..cb57863ad0 100644
--- a/doc/src/kspace_modify.txt
+++ b/doc/src/kspace_modify.txt
@@ -98,7 +98,7 @@ Coulombics.
The {overlap} keyword can be used in conjunction with the {minorder}
keyword with the PPPM styles to adjust the amount of communication
-that occurs when values on the FFT grid are exchangeed between
+that occurs when values on the FFT grid are exchanged between
processors. This communication is distinct from the communication
inherent in the parallel FFTs themselves, and is required because
processors interpolate charge and field values using grid point values
@@ -122,7 +122,7 @@ neighbor processors. The {minorder} keyword limits how small the
{order} setting can become. The minimum allowed value for PPPM is 2,
which is the default. If {minorder} is set to the same value as
{order} then no reduction is allowed, and LAMMPS will generate an
-error if the grid communcation is non-nearest-neighbor and {overlap}
+error if the grid communication is non-nearest-neighbor and {overlap}
is set to {no}. The {minorder} keyword is not currently supported in
MSM.
@@ -284,7 +284,7 @@ of pppm/disp. As shown in "(Isele-Holder)"_#Isele-Holder, optimal
performance and accuracy in the results is obtained when these values
are different.
-The {disp/auto} option controlls whether the pppm/disp is allowed to
+The {disp/auto} option controls whether the pppm/disp is allowed to
generate PPPM parameters automatically. If set to {no}, parameters have
to be specified using the {gewald/disp}, {mesh/disp},
{force/disp/real} or {force/disp/kspace} keywords, or
diff --git a/doc/src/kspace_style.txt b/doc/src/kspace_style.txt
index 492d1d88e7..e523c91d41 100644
--- a/doc/src/kspace_style.txt
+++ b/doc/src/kspace_style.txt
@@ -131,7 +131,7 @@ reduce force aliasing errors and increase the accuracy of the method
for a given mesh size. Or a coarser mesh can be used for the same
target accuracy, which saves CPU time. However, there is a trade-off
since FFTs on two meshes are now performed which increases the
-compuation required. See "(Cerutti)"_#Cerutti, "(Neelov)"_#Neelov,
+computation required. See "(Cerutti)"_#Cerutti, "(Neelov)"_#Neelov,
and "(Hockney)"_#Hockney for details of the method.
For high relative accuracy, using staggered PPPM allows the mesh size
@@ -174,7 +174,7 @@ using the compiler switch -DFFT_SINGLE for the FFT_INC setting in your
lo-level Makefile. This setting also changes some of the PPPM
operations (e.g. mapping charge to mesh and interpolating electric
fields to particles) to be performed in single precision. This option
-can speed-up long-range calulations, particularly in parallel or on
+can speed-up long-range calculations, particularly in parallel or on
GPUs. The use of the -DFFT_SINGLE flag is discussed in "this
section"_Section_start.html#start_2_4 of the manual. MSM does not
currently support the -DFFT_SINGLE compiler switch.
@@ -233,7 +233,7 @@ simulation cell. One way to handle this issue if you have a long
simulation where the box size changes dramatically, is to break it
into shorter simulations (multiple "run"_run.html commands). This
works because the grid size is re-computed at the beginning of each
-run. Another way to ensure the descired accuracy requirement is met
+run. Another way to ensure the described accuracy requirement is met
is to run a short simulation at the maximum expected tilt or length,
note the required grid size, and then use the
"kspace_modify"_kspace_modify.html {mesh} command to manually set the
@@ -255,7 +255,7 @@ are estimated using equations 33 and 46 of "(Wang)"_#Wang.
See the "kspace_modify"_kspace_modify.html command for additional
options of the K-space solvers that can be set, including a {force}
-option for setting an absoulte RMS error in forces, as opposed to a
+option for setting an absolute RMS error in forces, as opposed to a
relative RMS error.
:line
diff --git a/doc/src/minimize.txt b/doc/src/minimize.txt
index 2de23310b8..52701b3f54 100644
--- a/doc/src/minimize.txt
+++ b/doc/src/minimize.txt
@@ -48,7 +48,7 @@ soft"_pair_soft.html potential can be used to un-overlap atoms while
running dynamics.
Note that you can minimize some atoms in the system while holding the
-coordiates of other atoms fixed by applying "fix
+coordinates of other atoms fixed by applying "fix
setforce"_fix_setforce.html to the other atoms. See a fuller
discussion of using fixes while minimizing below.
@@ -58,7 +58,7 @@ which atom coordinates are changed. An inner iteration is then
performed using a line search algorithm. The line search typically
evaluates forces and energies several times to set new coordinates.
Currently, a backtracking algorithm is used which may not be optimal
-in terms of the number of force evaulations performed, but appears to
+in terms of the number of force evaluations performed, but appears to
be more robust than previous line searches we've tried. The
backtracking method is described in Nocedal and Wright's Numerical
Optimization (Procedure 3.1 on p 41).
diff --git a/doc/src/package.txt b/doc/src/package.txt
index de7e0f5c22..cfb663d4b1 100644
--- a/doc/src/package.txt
+++ b/doc/src/package.txt
@@ -166,7 +166,7 @@ neighbor list building is performed on the CPU. GPU neighbor list
building currently cannot be used with a triclinic box. GPU neighbor
list calculation currently cannot be used with
"hybrid"_pair_hybrid.html pair styles. GPU neighbor lists are not
-compatible with comannds that are not GPU-enabled. When a non-GPU
+compatible with commands that are not GPU-enabled. When a non-GPU
enabled command requires a neighbor list, it will also be built on the
CPU. In these cases, it will typically be more efficient to only use
CPU neighbor list builds.
diff --git a/doc/src/pair_adp.txt b/doc/src/pair_adp.txt
index c9dd31d57b..457a797d95 100644
--- a/doc/src/pair_adp.txt
+++ b/doc/src/pair_adp.txt
@@ -68,7 +68,7 @@ See the "pair_coeff"_pair_coeff.html doc page for alternate ways to
specify the path for the potential file.
As an example, the potentials/AlCu.adp file, included in the
-potentials directory of the LAMMPS distrbution, is an extended {setfl}
+potentials directory of the LAMMPS distribution, is an extended {setfl}
file which has tabulated ADP values for w elements and their alloy
interactions: Cu and Al. If your LAMMPS simulation has 4 atoms types
and you want the 1st 3 to be Al, and the 4th to be Cu, you would use
diff --git a/doc/src/pair_agni.txt b/doc/src/pair_agni.txt
index 08490c601a..27fb6c10fe 100644
--- a/doc/src/pair_agni.txt
+++ b/doc/src/pair_agni.txt
@@ -34,7 +34,7 @@ non-linear regression model.
The method implements the recently proposed machine learning access to
atomic forces as discussed extensively in the following publications -
"(Botu1)"_#Botu2015adaptive and "(Botu2)"_#Botu2015learning. The premise
-of the method is to map the atomic enviornment numerically into a
+of the method is to map the atomic environment numerically into a
fingerprint, and use machine learning methods to create a mapping to the
vectorial atomic forces.
diff --git a/doc/src/pair_beck.txt b/doc/src/pair_beck.txt
index 49c6c8db62..4e792754b8 100644
--- a/doc/src/pair_beck.txt
+++ b/doc/src/pair_beck.txt
@@ -73,7 +73,7 @@ more instructions on how to use the accelerated styles effectively.
[Mixing, shift, table, tail correction, restart, rRESPA info]:
-For atom type pairs I,J and I != J, coeffiecients must be specified.
+For atom type pairs I,J and I != J, coefficients must be specified.
No default mixing rules are used.
This pair style does not support the "pair_modify"_pair_modify.html shift
diff --git a/doc/src/pair_body.txt b/doc/src/pair_body.txt
index 622cc88f88..7899da832b 100644
--- a/doc/src/pair_body.txt
+++ b/doc/src/pair_body.txt
@@ -59,7 +59,7 @@ computed and summed. If the distance is not within the cutoff, no
interactions between the body and point particle are computed.
The interaction between two sub-particles, or a sub-particle and point
-particle, or betwee two point particles is computed as a Lennard-Jones
+particle, or between two point particles is computed as a Lennard-Jones
interaction, using the standard formula
:c,image(Eqs/pair_lj.jpg)
diff --git a/doc/src/pair_bop.txt b/doc/src/pair_bop.txt
index 0dbd1fc5dd..795d847fa6 100644
--- a/doc/src/pair_bop.txt
+++ b/doc/src/pair_bop.txt
@@ -78,8 +78,8 @@ levels of the recursive representations for both the sigma and the pi
bond-orders. Bond-order terms can be understood in terms of molecular
orbital hopping paths based upon the Cyrot-Lackmann theorem
("Pettifor_1"_#Pettifor_1). The sigma bond-order with a half-full
-valence shell is used to interpolate the bond-order expressiont that
-incorporated explicite valance band filling. This pi bond-order
+valence shell is used to interpolate the bond-order expression that
+incorporated explicit valance band filling. This pi bond-order
expression also contains also contains a three-member ring term that
allows implementation of an asymmetric density of states, which helps
to either stabilize or destabilize close-packed structures. The pi
diff --git a/doc/src/pair_coul.txt b/doc/src/pair_coul.txt
index b3d5fdef27..c598225e35 100644
--- a/doc/src/pair_coul.txt
+++ b/doc/src/pair_coul.txt
@@ -127,7 +127,7 @@ summation method, described in "Wolf"_#Wolf, given by:
:c,image(Eqs/pair_coul_wolf.jpg)
where {alpha} is the damping parameter, and erc() and erfc() are
-error-fuction and complementary error-function terms. This potential
+error-function and complementary error-function terms. This potential
is essentially a short-range, spherically-truncated,
charge-neutralized, shifted, pairwise {1/r} summation. With a
manipulation of adding and substracting a self term (for i = j) to the
@@ -135,7 +135,7 @@ first and second term on the right-hand-side, respectively, and a
small enough {alpha} damping parameter, the second term shrinks and
the potential becomes a rapidly-converging real-space summation. With
a long enough cutoff and small enough alpha parameter, the energy and
-forces calcluated by the Wolf summation method approach those of the
+forces calculated by the Wolf summation method approach those of the
Ewald sum. So it is a means of getting effective long-range
interactions with a short-range potential.
diff --git a/doc/src/pair_coul_diel.txt b/doc/src/pair_coul_diel.txt
index 498e1873df..9bd3b51c80 100644
--- a/doc/src/pair_coul_diel.txt
+++ b/doc/src/pair_coul_diel.txt
@@ -48,7 +48,7 @@ Examples of the use of this type of Coulomb interaction include implicit
solvent simulations of salt ions
"(Lenart)"_#Lenart and of ionic surfactants "(Jusufi)"_#Jusufi.
Note that this potential is only reasonable for implicit solvent simulations
-and in combiantion with coul/cut or coul/long. It is also usually combined
+and in combination with coul/cut or coul/long. It is also usually combined
with gauss/cut, see "(Lenart)"_#Lenart or "(Jusufi)"_#Jusufi.
The following coefficients must be defined for each pair of atom
diff --git a/doc/src/pair_dpd.txt b/doc/src/pair_dpd.txt
index 7072b1702d..62a5faffed 100644
--- a/doc/src/pair_dpd.txt
+++ b/doc/src/pair_dpd.txt
@@ -88,7 +88,7 @@ cutoff is used. Note that sigma is set equal to sqrt(2 T gamma),
where T is the temperature set by the "pair_style"_pair_style.html
command so it does not need to be specified.
-For style {dpd/tstat}, the coefficiencts defined for each pair of
+For style {dpd/tstat}, the coefficients defined for each pair of
atoms types via the "pair_coeff"_pair_coeff.html command is the same,
except that A is not included.
diff --git a/doc/src/pair_eam.txt b/doc/src/pair_eam.txt
index ed09ce4d99..4d3c2b2dea 100644
--- a/doc/src/pair_eam.txt
+++ b/doc/src/pair_eam.txt
@@ -273,7 +273,7 @@ style. However the DYNAMO {setfl} file must has two
lines added to it, at the end of the file:
line 1: Comment line (ignored)
-line 2: N Coefficient0 Coefficient1 ... CoeffincientN :ul
+line 2: N Coefficient0 Coefficient1 ... CoefficientN :ul
The last line begins with the degree {N} of the polynomial function
{h(x)} that modifies the cross interaction between A and B elements.
diff --git a/doc/src/pair_eim.txt b/doc/src/pair_eim.txt
index 47078f9a8f..8744d6d93e 100644
--- a/doc/src/pair_eim.txt
+++ b/doc/src/pair_eim.txt
@@ -107,7 +107,7 @@ This can be used when an {eim} potential is used as part of the
that will be used with other potentials.
The ffield.eim file in the {potentials} directory of the LAMMPS
-distribution is formated as follows:
+distribution is formatted as follows:
Lines starting with # are comments and are ignored by LAMMPS. Lines
starting with "global:" include three global values. The first value
diff --git a/doc/src/pair_hbond_dreiding.txt b/doc/src/pair_hbond_dreiding.txt
index b3c9b5b5d5..f83f37657f 100644
--- a/doc/src/pair_hbond_dreiding.txt
+++ b/doc/src/pair_hbond_dreiding.txt
@@ -107,7 +107,7 @@ hydrogen types to be assigned to the same donor/acceptor type pair.
For other pair_styles, if the pair_coeff command is re-used for the
same I.J type pair, the settings for that type pair are overwritten.
For the hydrogen bond potentials this is not the case; the settings
-are cummulative. This means the only way to turn off a previous
+are cumulative. This means the only way to turn off a previous
setting, is to re-use the pair_style command and start over.
For the {hbond/dreiding/lj} style the list of coefficients is as
diff --git a/doc/src/pair_hybrid.txt b/doc/src/pair_hybrid.txt
index 47451cf14a..b7e46b9566 100644
--- a/doc/src/pair_hybrid.txt
+++ b/doc/src/pair_hybrid.txt
@@ -189,7 +189,7 @@ potentials.
Different force fields (e.g. CHARMM vs AMBER) may have different rules
for applying weightings that change the strength of pairwise
-interactions bewteen pairs of atoms that are also 1-2, 1-3, and 1-4
+interactions between pairs of atoms that are also 1-2, 1-3, and 1-4
neighbors in the molecular bond topology, as normally set by the
"special_bonds"_special_bonds.html command. Different weights can be
assigned to different pair hybrid sub-styles via the "pair_modify
diff --git a/doc/src/pair_kim.txt b/doc/src/pair_kim.txt
index 04d8d23dba..5a623e5ece 100644
--- a/doc/src/pair_kim.txt
+++ b/doc/src/pair_kim.txt
@@ -46,7 +46,7 @@ model. You should get an error or warning message from either LAMMPS
or KIM if there is an incompatibility.
The argument {printflag} is optional. If it is set to a non-zero
-value then a KIM dsecriptor file is printed when KIM is invoked. This
+value then a KIM descriptor file is printed when KIM is invoked. This
can be useful for debugging. The default is to not print this file.
Only a single pair_coeff command is used with the {kim} style which
diff --git a/doc/src/pair_line_lj.txt b/doc/src/pair_line_lj.txt
index bb1146b64e..44cfeb48e9 100644
--- a/doc/src/pair_line_lj.txt
+++ b/doc/src/pair_line_lj.txt
@@ -39,7 +39,7 @@ function of the line segment length and the specified sub-particle
size for that particle type. If a line segment has a length L and is
of type I, then the number of spheres N that represent the segment is
calculated as N = L/sizeI, rounded up to an integer value. Thus if L
-is not evenly divisibly by sizeI, N is incremented to include one
+is not evenly divisible by sizeI, N is incremented to include one
extra sphere. The centers of the spheres are spaced equally along the
line segment. Imagine N+1 equally-space points, which include the 2
end points of the segment. The sphere centers are halfway between
@@ -48,7 +48,7 @@ each pair of points.
The LJ interaction between 2 spheres on different line segments (or a
sphere on a line segment and a point particles) is computed with
sub-particle epsilon, sigma, and cutoff values that are set by the
-pair_coeff command, as described below. If the distance bewteen the 2
+pair_coeff command, as described below. If the distance between the 2
spheres is greater than the sub-particle cutoff, there is no
interaction. This means that some pairs of sub-particles on 2 line
segments may interact, but others may not.
@@ -90,7 +90,7 @@ The {sizeI} and {sizeJ} coefficients are the sub-particle sizes for
line particles of type I and type J. They are used to define the N
sub-particles per segment as described above. These coefficients are
actually stored on a per-type basis. Thus if there are multiple
-pair_coeff commmands that involve type I, as either the first or
+pair_coeff commands that involve type I, as either the first or
second atom type, you should use consistent values for sizeI or sizeJ
in all of them. If you do not do this, the last value specified for
sizeI will apply to all segments of type I. If typeI or typeJ refers
@@ -112,7 +112,7 @@ cutoff is used.
[Mixing, shift, table, tail correction, restart, rRESPA info]:
-For atom type pairs I,J and I != J, coeffiecients must be specified.
+For atom type pairs I,J and I != J, coefficients must be specified.
No default mixing rules are used.
This pair style does not support the "pair_modify"_pair_modify.html
diff --git a/doc/src/pair_lj_soft.txt b/doc/src/pair_lj_soft.txt
index 784f1f7f52..95aa58ed37 100644
--- a/doc/src/pair_lj_soft.txt
+++ b/doc/src/pair_lj_soft.txt
@@ -106,7 +106,7 @@ pair_coeff 1 1 1.0 9.5 :pre
The {lj/cut/soft} style and substyles compute the 12/6 Lennard-Jones
and Coulomb potential modified by a soft core, in order to avoid
singularities during free energy calculations when sites are created
-or anihilated "(Beutler)"_#Beutler,
+or annihilated "(Beutler)"_#Beutler,
:c,image(Eqs/pair_lj_soft.jpg)
@@ -124,7 +124,7 @@ pair potentiel is identical to a Lennard-Jones term or a Coulomb term
or a combination of both. When lambda = 0 the interactions are
deactivated. The transition between these two extrema is smoothed by a
soft repulsive core in order to avoid singularities in potential
-energy and forces when sites are created or anihilated and can overlap
+energy and forces when sites are created or annihilated and can overlap
"(Beutler)"_#Beutler.
The paratemers n, alpha_LJ and alpha_C are set in the
@@ -192,7 +192,7 @@ in several water models).
NOTES: When using the core-softed Coulomb potentials with long-range
solvers ({coul/long/soft}, {lj/cut/coul/long/soft}, etc.) in a free
energy calculation in which sites holding electrostatic charges are
-being created or anihilated (using "fix adapt/fep"_fix_adapt_fep.html
+being created or annihilated (using "fix adapt/fep"_fix_adapt_fep.html
and "compute fep"_compute_fep.html) it is important to adapt both the
lambda activation parameter (from 0 to 1, or the reverse) and the
value of the charge (from 0 to its final value, or the reverse). This
diff --git a/doc/src/pair_meam_spline.txt b/doc/src/pair_meam_spline.txt
index ba46a135a2..08e53cb38c 100644
--- a/doc/src/pair_meam_spline.txt
+++ b/doc/src/pair_meam_spline.txt
@@ -140,5 +140,5 @@ for more info.
:link(Lenosky)
[(Lenosky)] Lenosky, Sadigh, Alonso, Bulatov, de la Rubia, Kim, Voter,
-Kress, Modelling Simulation Materials Science Enginerring, 8, 825
+Kress, Modelling Simulation Materials Science Engineering, 8, 825
(2000).
diff --git a/doc/src/pair_mie.txt b/doc/src/pair_mie.txt
index fec00ed44c..ad602db9f1 100644
--- a/doc/src/pair_mie.txt
+++ b/doc/src/pair_mie.txt
@@ -57,7 +57,7 @@ cutoff specified in the pair_style command is used.
For atom type pairs I,J and I != J, the epsilon and sigma coefficients
and cutoff distance for all of the mie/cut pair styles can be mixed.
-If not explicity defined, both the repulsive and attractive gamma
+If not explicitly defined, both the repulsive and attractive gamma
exponents for different atoms will be calculated following the same
mixing rule defined for distances. The default mix value is
{geometric}. See the "pair_modify" command for details.
diff --git a/doc/src/pair_morse.txt b/doc/src/pair_morse.txt
index 73bc1a314f..c5e3a3c399 100644
--- a/doc/src/pair_morse.txt
+++ b/doc/src/pair_morse.txt
@@ -80,7 +80,7 @@ the {morse} and {morse/smooth/linear} styles.
The {morse/soft} variant is similar to the {lj/cut/soft} pair style
in that it modifies the potential at short range to have a soft core.
This helps to avoid singularities during free energy calculation in
-which sites are created or anihilated. The formula differs from that
+which sites are created or annihilated. The formula differs from that
of {lj/cut/soft}, and is instead given by:
:c,image(Eqs/pair_morse_soft.jpg)
diff --git a/doc/src/pair_resquared.txt b/doc/src/pair_resquared.txt
index f404fa4181..53737d2274 100644
--- a/doc/src/pair_resquared.txt
+++ b/doc/src/pair_resquared.txt
@@ -68,7 +68,7 @@ A12 specifies the energy prefactor which depends on the types of the
two interacting particles.
For ellipsoid/ellipsoid interactions, the interaction is computed by
-the formulas in the supplementary docuement referenced above. A12 is
+the formulas in the supplementary document referenced above. A12 is
the Hamaker constant as described in "(Everaers)"_#Everaers. In LJ
units:
@@ -79,7 +79,7 @@ composing the ellipsoids and epsilon_LJ determines the interaction
strength of the spherical particles.
For ellipsoid/LJ sphere interactions, the interaction is also computed
-by the formulas in the supplementary docuement referenced above. A12
+by the formulas in the supplementary document referenced above. A12
has a modifed form (see "here"_PDF/pair_resquared_extra.pdf for
details):
diff --git a/doc/src/pair_smtbq.txt b/doc/src/pair_smtbq.txt
index c70af68b30..714188de32 100644
--- a/doc/src/pair_smtbq.txt
+++ b/doc/src/pair_smtbq.txt
@@ -36,7 +36,7 @@ atoms. This interactions depend on interatomic distance
The parameters appearing in the upper expressions are set in the
ffield.SMTBQ.Syst file where Syst corresponds to the selected system
-(e.g. field.SMTBQ.Al2O3). Exemples for TiO2,
+(e.g. field.SMTBQ.Al2O3). Examples for TiO2,
Al2O3 are provided. A single pair_coeff command
is used with the SMTBQ styles which provides the path to the potential
file with parameters for needed elements. These are mapped to LAMMPS
diff --git a/doc/src/pair_sph_heatconduction.txt b/doc/src/pair_sph_heatconduction.txt
index d25debe91b..2387056a1b 100644
--- a/doc/src/pair_sph_heatconduction.txt
+++ b/doc/src/pair_sph_heatconduction.txt
@@ -20,7 +20,7 @@ pair_coeff * * 1.0 2.4 :pre
[Description:]
The sph/heatconduction style computes heat transport between SPH particles.
-The transport model is the diffusion euqation for the internal energy.
+The transport model is the diffusion equation for the internal energy.
See "this PDF guide"_USER/sph/SPH_LAMMPS_userguide.pdf to using SPH in
LAMMPS.
diff --git a/doc/src/pair_srp.txt b/doc/src/pair_srp.txt
index a951cccbc3..c1eff12cbf 100644
--- a/doc/src/pair_srp.txt
+++ b/doc/src/pair_srp.txt
@@ -86,7 +86,7 @@ the beginning of a run. This means you must specify the number of
types in your system accordingly; usually to be one larger than what
would normally be the case, e.g. via the "create_box"_create_box.html
or by changing the header in your "data file"_read_data.html. The
-ficitious "bond particles" are inserted at the beginning of the run,
+fictitious "bond particles" are inserted at the beginning of the run,
and serve as placeholders that define the position of the bonds. This
allows neighbor lists to be constructed and pairwise interactions to
be computed in almost the same way as is done for actual particles.
diff --git a/doc/src/pair_table.txt b/doc/src/pair_table.txt
index 6504edb2a5..fa694f2177 100644
--- a/doc/src/pair_table.txt
+++ b/doc/src/pair_table.txt
@@ -180,7 +180,7 @@ NOTE: If you use "R" or "RSQ", the tabulated distance values in the
file are effectively ignored, and replaced by new values as described
in the previous paragraph. If the distance value in the table is not
very close to the new value (i.e. round-off difference), then you will
-be assingning energy/force values to a different distance, which is
+be assigning energy/force values to a different distance, which is
probably not what you want. LAMMPS will warn if this is occurring.
If used, the parameter "BITMAP" is also followed by 2 values {rlo} and
diff --git a/doc/src/partition.txt b/doc/src/partition.txt
index ccef359050..9c1d560c83 100644
--- a/doc/src/partition.txt
+++ b/doc/src/partition.txt
@@ -39,7 +39,7 @@ such a variable is used in a "jump"_jump.html command.
The "partition" command is another mechanism for having as input
script operate differently on different partitions. It is basically a
-prefix on any LAMMPS command. The commmand will only be invoked on
+prefix on any LAMMPS command. The command will only be invoked on
the partition(s) specified by the {style} and {N} arguments.
If the {style} is {yes}, the command will be invoked on any partition
diff --git a/doc/src/prd.txt b/doc/src/prd.txt
index 1ad66ee441..607c367afd 100644
--- a/doc/src/prd.txt
+++ b/doc/src/prd.txt
@@ -133,7 +133,7 @@ event.
The event check is performed by a compute with the specified
{compute-ID}. Currently there is only one compute that works with the
-PRD commmand, which is the "compute
+PRD command, which is the "compute
event/displace"_compute_event_displace.html command. Other
event-checking computes may be added. "Compute
event/displace"_compute_event_displace.html checks whether any atom in
@@ -230,7 +230,7 @@ files for each partition, e.g. log.lammps.0, log.lammps.1, etc. For
the PRD command, these contain the thermodynamic output for each
replica. You will see short runs and minimizations corresponding to
the dynamics and quench operations of the loop listed above. The
-timestep will be reset aprpopriately depending on whether the
+timestep will be reset appropriately depending on whether the
operation advances time or not.
After the PRD command completes, timing statistics for the PRD run are
diff --git a/doc/src/processors.txt b/doc/src/processors.txt
index adf2a0920f..854d41ba49 100644
--- a/doc/src/processors.txt
+++ b/doc/src/processors.txt
@@ -179,7 +179,7 @@ The first non-blank, non-comment line should have
Px Py Py :pre
These must be compatible with the total number of processors
-and the Px, Py, Pz settings of the processors commmand.
+and the Px, Py, Pz settings of the processors command.
This line should be immediately followed by
P = Px*Py*Pz lines of the form:
@@ -244,7 +244,7 @@ The {part} keyword affects the factorization of P into Px,Py,Pz.
It can be useful when running in multi-partition mode, e.g. with the
"run_style verlet/split"_run_style.html command. It specifies a
-dependency bewteen a sending partition {Psend} and a receiving
+dependency between a sending partition {Psend} and a receiving
partition {Precv} which is enforced when each is setting up their own
mapping of their processors to the simulation box. Each of {Psend}
and {Precv} must be integers from 1 to Np, where Np is the number of
diff --git a/doc/src/python.txt b/doc/src/python.txt
index 7da69a0319..db379d425f 100644
--- a/doc/src/python.txt
+++ b/doc/src/python.txt
@@ -143,7 +143,7 @@ numeric or string value, as specified by the {format} keyword.
As explained on the "variable"_variable.html doc page, the definition
of a python-style variable associates a Python function name with the
variable. This must match the {func} setting for this command. For
-exampe these two commands would be self-consistent:
+example these two commands would be self-consistent:
variable foo python myMultiply
python myMultiply return v_foo format f file funcs.py :pre
@@ -356,7 +356,7 @@ python loop invoke :pre
This has the effect of looping over a series of 10 short runs (10
timesteps each) where the pair style cutoff is increased from a value
of 1.0 in distance units, in increments of 0.1. The looping stops
-when the per-atom potential energy falls below a threshhold of -4.0 in
+when the per-atom potential energy falls below a threshold of -4.0 in
energy units. More generally, Python can be used to implement a loop
with complex logic, much more so than can be created using the LAMMPS
"jump"_jump.html and "if"_if.html commands.
@@ -384,7 +384,7 @@ file() functions, so long as the command would work if it were
executed in the LAMMPS input script directly at the same point.
However, a Python function can also be invoked during a run, whenever
-an associated LAMMPS variable it is assigned to is evaluted. If the
+an associated LAMMPS variable it is assigned to is evaluated. If the
variable is an input argument to another LAMMPS command (e.g. "fix
setforce"_fix_setforce.html), then the Python function will be invoked
inside the class for that command, in one of its methods that is
diff --git a/doc/src/read_data.txt b/doc/src/read_data.txt
index 9ddc9d8921..b860fef848 100644
--- a/doc/src/read_data.txt
+++ b/doc/src/read_data.txt
@@ -180,7 +180,7 @@ used appropriately when each data file is read, the values in those
sections will be stored correctly in the larger data structures
allocated by the use of the {extra} keywords. E.g. the substrate file
can list mass and pair coefficients for type 1 silicon atoms. The
-water file can list mass and pair coeffcients for type 1 and type 2
+water file can list mass and pair coefficients for type 1 and type 2
hydrogen and oxygen atoms. Use of the {extra} and {offset} keywords
will store those mass and pair coefficient values appropriately in
data structures that allow for 3 atom types (Si, H, O). Of course,
diff --git a/doc/src/region.txt b/doc/src/region.txt
index c4798a035b..7b5c9e36d4 100644
--- a/doc/src/region.txt
+++ b/doc/src/region.txt
@@ -283,7 +283,7 @@ velocity:
variable dx equal ramp(0,10)
region 2 sphere 10.0 10.0 0.0 5 move v_dx NULL NULL :pre
-Note that the initial displacemet is 0.0, though that is not required.
+Note that the initial displacement is 0.0, though that is not required.
Either of these variables would "wiggle" the region back and forth in
the y direction:
diff --git a/doc/src/replicate.txt b/doc/src/replicate.txt
index 2e7153e38c..291558e0e5 100644
--- a/doc/src/replicate.txt
+++ b/doc/src/replicate.txt
@@ -53,7 +53,7 @@ top of each other.
NOTE: You cannot use the replicate command on a system which has a
molecule that spans the box and is bonded to itself across a periodic
-boundary, so that the molecule is efffectively a loop. A simple
+boundary, so that the molecule is effectively a loop. A simple
example would be a linear polymer chain that spans the simulation box
and bonds back to itself across the periodic boundary. More realistic
examples would be a CNT (meant to be an infinitely long CNT) or a
diff --git a/doc/src/run_style.txt b/doc/src/run_style.txt
index 2dafabebb5..f487de2831 100644
--- a/doc/src/run_style.txt
+++ b/doc/src/run_style.txt
@@ -112,16 +112,16 @@ partition yes 1 processors 3 4 5
partition yes 2 processors 3 1 5 :pre
When you run in 2-partition mode with the {verlet/split} style, the
-thermodyanmic data for the entire simulation will be output to the log
+thermodynamic data for the entire simulation will be output to the log
and screen file of the 1st partition, which are log.lammps.0 and
screen.0 by default; see the "-plog and -pscreen command-line
switches"_Section_start.html#start_7 to change this. The log and
screen file for the 2nd partition will not contain thermodynamic
-output beyone the 1st timestep of the run.
+output beyond the 1st timestep of the run.
See "Section 5"_Section_accelerate.html of the manual for
performance details of the speed-up offered by the {verlet/split}
-style. One important performance consideration is the assignemnt of
+style. One important performance consideration is the assignment of
logical processors in the 2 partitions to the physical cores of a
parallel machine. The "processors"_processors.html command has
options to support this, and strategies are discussed in
diff --git a/doc/src/suffix.txt b/doc/src/suffix.txt
index 70c6a3031b..127719cdb5 100644
--- a/doc/src/suffix.txt
+++ b/doc/src/suffix.txt
@@ -91,7 +91,7 @@ a disabled suffix is turned back on. The use of these 2 commands lets
your input script use a standard LAMMPS style (i.e. a non-accelerated
variant), which can be useful for testing or benchmarking purposes.
Of course this is also possible by not using any suffix commands, and
-explictly appending or not appending the suffix to the relevant
+explicitly appending or not appending the suffix to the relevant
commands in your input script.
NOTE: The default "run_style"_run_style.html verlet is invoked prior to
diff --git a/doc/src/tad.txt b/doc/src/tad.txt
index 5b0f5a006c..04c7d708f6 100644
--- a/doc/src/tad.txt
+++ b/doc/src/tad.txt
@@ -130,7 +130,7 @@ transition event.
The event check is performed by a compute with the specified
{compute-ID}. Currently there is only one compute that works with the
-TAD commmand, which is the "compute
+TAD command, which is the "compute
event/displace"_compute_event_displace.html command. Other
event-checking computes may be added. "Compute
event/displace"_compute_event_displace.html checks whether any atom in
@@ -144,7 +144,7 @@ NEB is determined by the {neb_style} keyword and must be a damped
dynamics minimizer. The tolerances and limits for each NEB
calculation can be set by the {neb} keyword. As discussed on the
"neb"_neb.html, it is often advantageous to use a larger timestep for
-NEB than for normal dyanmics. Since the size of the timestep set by
+NEB than for normal dynamics. Since the size of the timestep set by
the "timestep"_timestep.html command is used by TAD for performing
dynamics, there is a {neb_step} keyword which can be used to set a
larger timestep for each NEB calculation if desired.
@@ -258,7 +258,7 @@ number of replicas or processors.
Note that within a single state, the dynamics will typically
temporarily continue beyond the event that is ultimately chosen, until
-the stopping criterionis satisfied. When the event is eventually
+the stopping criterion is satisfied. When the event is eventually
executed, the timestep counter is reset to the value when the event
was detected. Similarly, after each quench and NEB minimization, the
timestep counter is reset to the value at the start of the
diff --git a/doc/src/thermo_style.txt b/doc/src/thermo_style.txt
index 6cdb8a3cc8..37b58618a6 100644
--- a/doc/src/thermo_style.txt
+++ b/doc/src/thermo_style.txt
@@ -226,7 +226,7 @@ simulation time, also in time "units"_units.html, which is simply
not been reset. If the timestep has changed (e.g. via "fix
dt/reset"_fix_dt_reset.html) or the timestep has been reset (e.g. via
the "reset_timestep" command), then the simulation time is effectively
-a cummulative value up to the current point.
+a cumulative value up to the current point.
The {cpu} keyword is elapsed CPU seconds since the beginning of this
run. The {tpcpu} and {spcpu} keywords are measures of how fast your
@@ -289,7 +289,7 @@ The keywords {cella}, {cellb}, {cellc}, {cellalpha}, {cellbeta},
{cellgamma}, correspond to the usual crystallographic quantities that
define the periodic unit cell of a crystal. See "this
section"_Section_howto.html#howto_12 of the doc pages for a geometric
-description of triclinic periodic cells, including a precise defintion
+description of triclinic periodic cells, including a precise definition
of these quantities in terms of the internal LAMMPS cell dimensions
{lx}, {ly}, {lz}, {yz}, {xz}, {xy}.
diff --git a/doc/src/timer.txt b/doc/src/timer.txt
index 358ec75a53..c148a9dce1 100644
--- a/doc/src/timer.txt
+++ b/doc/src/timer.txt
@@ -52,7 +52,7 @@ procsessors. The {full} setting adds information about CPU
utilization and thread utilization, when multi-threading is enabled.
With the {sync} setting, all MPI tasks are synchronized at each timer
-call which measures load imbalance for each section more accuractly,
+call which measures load imbalance for each section more accurately,
though it can also slow down the simulation by prohibiting overlapping
independent computations on different MPI ranks Using the {nosync}
setting (which is the default) turns this synchronization off.
diff --git a/doc/src/tutorial_drude.txt b/doc/src/tutorial_drude.txt
index c2f4a16207..a350521f6c 100644
--- a/doc/src/tutorial_drude.txt
+++ b/doc/src/tutorial_drude.txt
@@ -75,7 +75,7 @@ The motion of of the Drude particles can be calculated by minimizing
the energy of the induced dipoles at each timestep, by an interative,
self-consistent procedure. The Drude particles can be massless and
therefore do not contribute to the kinetic energy. However, the
-relaxed method is computationall slow. An extended-lagrangian method
+relaxed method is computational slow. An extended-lagrangian method
can be used to calculate the positions of the Drude particles, but
this requires them to have mass. It is important in this case to
decouple the degrees of freedom associated with the Drude oscillators
@@ -270,7 +270,7 @@ be stable, for example if the atomic polarizability is too high for
instance, a DP can escape from its DC and be captured by another DC,
which makes the force and energy diverge and the simulation
crash. Even without reaching this extreme case, the correlation
-between nearby dipoles on the same molecule may be exagerated. Often,
+between nearby dipoles on the same molecule may be exaggerated. Often,
special bond relations prevent bonded neighboring atoms to see the
charge of each other's DP, so that the problem does not always appear.
It is possible to use screened dipole dipole interactions by using the
diff --git a/doc/src/tutorial_pylammps.txt b/doc/src/tutorial_pylammps.txt
index 6966bb90b9..5d3491782e 100644
--- a/doc/src/tutorial_pylammps.txt
+++ b/doc/src/tutorial_pylammps.txt
@@ -328,7 +328,7 @@ IPyLammps Examples :h2
Examples of IPython notebooks can be found in the python/examples/pylammps
subdirectory. To open these notebooks launch {jupyter notebook} inside this
directory and navigate to one of them. If you compiled and installed
-a LAMMPS shared library with execeptions, PNG, JPEG and FFMPEG support
+a LAMMPS shared library with exceptions, PNG, JPEG and FFMPEG support
you should be able to rerun all of these notebooks.
Validating a dihedral potential :h3
diff --git a/doc/src/variable.txt b/doc/src/variable.txt
index 29d50a2b8e..a46030b162 100644
--- a/doc/src/variable.txt
+++ b/doc/src/variable.txt
@@ -781,7 +781,7 @@ is for a vector-style variable where "name" is replaced by the name of
the variable.
These functions operate on a global vector of inputs and reduce it to
-a single scalar value. This is analagous to the operation of the
+a single scalar value. This is analogous to the operation of the
"compute reduce"_compute_reduce.html command, which performs similar
operations on per-atom and local vectors.
diff --git a/doc/src/write_dump.txt b/doc/src/write_dump.txt
index ae32a94e84..6e99d75460 100644
--- a/doc/src/write_dump.txt
+++ b/doc/src/write_dump.txt
@@ -53,7 +53,7 @@ support optional arguments and thus LAMMPS needs to be able to cleanly
separate the two sets of args.
Note that if the specified filename uses wildcard characters "*" or
-"%", as supported by the "dump"_dump.html commmand, they will operate
+"%", as supported by the "dump"_dump.html command, they will operate
in the same fashion to create the new filename(s). Normally, "dump
image"_dump_image.html files require a filename with a "*" character
for the timestep. That is not the case for the write_dump command; no
From 7dd60f97377ad7ef7fdb7fd9650b5da6bd4eae48 Mon Sep 17 00:00:00 2001
From: Richard Berger
Date: Sun, 5 Mar 2017 20:35:52 -0500
Subject: [PATCH 04/15] Fix typos in src files
---
src/COLLOID/pair_yukawa_colloid.h | 4 ++--
src/GPU/pair_born_gpu.h | 2 +-
src/GPU/pair_zbl_gpu.h | 2 +-
src/KSPACE/pair_buck_long_coul_long.h | 6 +++---
src/KSPACE/pppm_disp.h | 2 +-
src/MANYBODY/pair_bop.h | 2 +-
src/MISC/fix_ttm.h | 2 +-
src/REAX/fix_reax_bonds.h | 2 +-
src/REPLICA/neb.h | 2 +-
src/REPLICA/prd.h | 2 +-
src/REPLICA/tad.h | 2 +-
src/REPLICA/temper.h | 2 +-
src/SNAP/pair_snap.cpp | 2 +-
src/SRD/fix_srd.cpp | 2 +-
src/USER-AWPMD/atom_vec_wavepacket.h | 4 ++--
src/USER-DIFFRACTION/fix_saed_vtk.h | 6 +++---
src/USER-MISC/fix_grem.h | 2 +-
src/USER-MISC/improper_ring.cpp | 2 +-
src/USER-MISC/temper_grem.h | 2 +-
src/USER-OMP/pair_buck_long_coul_long_omp.h | 6 +++---
src/USER-OMP/thr_data.cpp | 2 +-
src/USER-QTB/fix_qbmsst.h | 2 +-
src/USER-SMD/pair_smd_triangulated_surface.cpp | 2 +-
src/USER-VTK/dump_custom_vtk.h | 8 ++++----
src/atom.h | 2 +-
src/atom_vec_tri.h | 2 +-
src/balance.cpp | 16 ++++++++--------
src/balance.h | 6 +++---
src/compute_angle.h | 2 +-
src/compute_bond.h | 2 +-
src/compute_chunk_atom.h | 4 ++--
src/compute_cna_atom.h | 4 ++--
src/compute_contact_atom.h | 2 +-
src/compute_coord_atom.h | 2 +-
src/compute_dihedral.h | 2 +-
src/compute_group_group.h | 4 ++--
src/compute_hexorder_atom.h | 2 +-
src/compute_improper.h | 2 +-
src/compute_orientorder_atom.h | 2 +-
src/compute_pair.h | 2 +-
src/compute_property_chunk.h | 6 +++---
src/compute_property_local.h | 2 +-
src/create_atoms.h | 2 +-
src/dump_custom.h | 4 ++--
src/dump_local.h | 2 +-
src/fix_addforce.h | 2 +-
src/fix_ave_histo_weight.cpp | 2 +-
src/fix_ave_time.h | 6 +++---
src/fix_balance.cpp | 4 ++--
src/fix_deform.h | 2 +-
src/fix_group.h | 2 +-
src/fix_shear_history.cpp | 2 +-
src/neighbor.cpp | 2 +-
src/output.h | 2 +-
src/pair_gauss.cpp | 2 +-
src/run.h | 2 +-
src/thermo.h | 2 +-
src/variable.cpp | 4 ++--
src/variable.h | 2 +-
59 files changed, 89 insertions(+), 89 deletions(-)
diff --git a/src/COLLOID/pair_yukawa_colloid.h b/src/COLLOID/pair_yukawa_colloid.h
index f22c9654be..ac15d535b3 100644
--- a/src/COLLOID/pair_yukawa_colloid.h
+++ b/src/COLLOID/pair_yukawa_colloid.h
@@ -43,10 +43,10 @@ class PairYukawaColloid : public PairYukawa {
E: Pair yukawa/colloid requires atom style sphere
-Self-explantory.
+Self-explanatory.
E: Pair yukawa/colloid requires atoms with same type have same radius
-Self-explantory.
+Self-explanatory.
*/
diff --git a/src/GPU/pair_born_gpu.h b/src/GPU/pair_born_gpu.h
index 49c76fadf6..d8ccbe0029 100644
--- a/src/GPU/pair_born_gpu.h
+++ b/src/GPU/pair_born_gpu.h
@@ -54,6 +54,6 @@ package
E: Cannot use newton pair with born/gpu pair style
-Self-explantory.
+Self-explanatory.
*/
diff --git a/src/GPU/pair_zbl_gpu.h b/src/GPU/pair_zbl_gpu.h
index 0939dafaaa..950fe952dd 100644
--- a/src/GPU/pair_zbl_gpu.h
+++ b/src/GPU/pair_zbl_gpu.h
@@ -53,6 +53,6 @@ package
E: Cannot use newton pair with zbl/gpu pair style
-Self-explantory.
+Self-explanatory.
*/
diff --git a/src/KSPACE/pair_buck_long_coul_long.h b/src/KSPACE/pair_buck_long_coul_long.h
index 736742a77a..cf752a09b0 100644
--- a/src/KSPACE/pair_buck_long_coul_long.h
+++ b/src/KSPACE/pair_buck_long_coul_long.h
@@ -80,15 +80,15 @@ command-line option when running LAMMPS to see the offending line.
W: Using largest cutoff for buck/long/coul/long
-Self-exlanatory.
+Self-explanatory.
E: Cutoffs missing in pair_style buck/long/coul/long
-Self-exlanatory.
+Self-explanatory.
E: LJ6 off not supported in pair_style buck/long/coul/long
-Self-exlanatory.
+Self-explanatory.
E: Coulomb cut not supported in pair_style buck/long/coul/coul
diff --git a/src/KSPACE/pppm_disp.h b/src/KSPACE/pppm_disp.h
index ae07ea9e07..6993ad6c91 100644
--- a/src/KSPACE/pppm_disp.h
+++ b/src/KSPACE/pppm_disp.h
@@ -513,7 +513,7 @@ E: Cannot compute initial g_ewald_disp
LAMMPS failed to compute an initial guess for the PPPM_disp g_ewald_6
factor that partitions the computation between real space and k-space
-for Disptersion interactions.
+for Dispersion interactions.
E: Could not compute grid size for Dispersion
diff --git a/src/MANYBODY/pair_bop.h b/src/MANYBODY/pair_bop.h
index a0408d55dd..d55d9a79a4 100644
--- a/src/MANYBODY/pair_bop.h
+++ b/src/MANYBODY/pair_bop.h
@@ -274,7 +274,7 @@ atomic structure to ensure that it is realistic.
E: Too many atom triplets for pair bop
The number of three atom groups for angle determinations exceeds the
-expected number. Check your atomic structrure to ensure that it is
+expected number. Check your atomic structure to ensure that it is
realistic.
E: Cannot open BOP potential file %s
diff --git a/src/MISC/fix_ttm.h b/src/MISC/fix_ttm.h
index 34629fb538..57d18bcb3a 100644
--- a/src/MISC/fix_ttm.h
+++ b/src/MISC/fix_ttm.h
@@ -148,7 +148,7 @@ Self-explanatory.
E: Initial temperatures not all set in fix ttm
-Self-explantory.
+Self-explanatory.
W: Too many inner timesteps in fix ttm
diff --git a/src/REAX/fix_reax_bonds.h b/src/REAX/fix_reax_bonds.h
index dc7c6d389e..99237d8397 100644
--- a/src/REAX/fix_reax_bonds.h
+++ b/src/REAX/fix_reax_bonds.h
@@ -63,7 +63,7 @@ Check that the path and name are correct.
E: Cannot use fix reax/bonds without pair_style reax
-Self-explantory.
+Self-explanatory.
E: Fix reax/bonds numbonds > nsbmax_most
diff --git a/src/REPLICA/neb.h b/src/REPLICA/neb.h
index 00719dcc95..afedf0cdc5 100644
--- a/src/REPLICA/neb.h
+++ b/src/REPLICA/neb.h
@@ -106,7 +106,7 @@ for NEB.
E: Too many timesteps
-The cummulative timesteps must fit in a 64-bit integer.
+The cumulative timesteps must fit in a 64-bit integer.
E: Unexpected end of neb file
diff --git a/src/REPLICA/prd.h b/src/REPLICA/prd.h
index cc866007d2..be09af4965 100644
--- a/src/REPLICA/prd.h
+++ b/src/REPLICA/prd.h
@@ -122,7 +122,7 @@ after the PRD simulation.
E: Too many timesteps
-The cummulative timesteps must fit in a 64-bit integer.
+The cumulative timesteps must fit in a 64-bit integer.
E: Cannot use PRD with a changing box
diff --git a/src/REPLICA/tad.h b/src/REPLICA/tad.h
index 8b8b22552a..d44b226643 100644
--- a/src/REPLICA/tad.h
+++ b/src/REPLICA/tad.h
@@ -145,7 +145,7 @@ after the PRD simulation.
E: Too many timesteps
-The cummulative timesteps must fit in a 64-bit integer.
+The cumulative timesteps must fit in a 64-bit integer.
E: Too many iterations
diff --git a/src/REPLICA/temper.h b/src/REPLICA/temper.h
index 832e36e491..3d24fdbc69 100644
--- a/src/REPLICA/temper.h
+++ b/src/REPLICA/temper.h
@@ -96,7 +96,7 @@ temperature (nvt or langevin).
E: Too many timesteps
-The cummulative timesteps must fit in a 64-bit integer.
+The cumulative timesteps must fit in a 64-bit integer.
E: Tempering could not find thermo_pe compute
diff --git a/src/SNAP/pair_snap.cpp b/src/SNAP/pair_snap.cpp
index d3f132bd04..dc84b0be05 100644
--- a/src/SNAP/pair_snap.cpp
+++ b/src/SNAP/pair_snap.cpp
@@ -700,7 +700,7 @@ double PairSNAP::extra_cutoff()
// Note that at most one atom is exchanged per processor pair.
-// Also note that the local atom assignement
+// Also note that the local atom assignment
// doesn't change. This load balancer will cause
// some ghost atoms to have full neighborlists
// which are unique to PairSNAP.
diff --git a/src/SRD/fix_srd.cpp b/src/SRD/fix_srd.cpp
index 736b10d83f..7e43901dc9 100644
--- a/src/SRD/fix_srd.cpp
+++ b/src/SRD/fix_srd.cpp
@@ -811,7 +811,7 @@ void FixSRD::post_force(int vflag)
}
// if wall has moved too far, trigger reneigh on next step
- // analagous to neighbor check for big particle moving 1/2 of skin distance
+ // analogous to neighbor check for big particle moving 1/2 of skin distance
if (wallexist) {
for (m = 0; m < nwall; m++)
diff --git a/src/USER-AWPMD/atom_vec_wavepacket.h b/src/USER-AWPMD/atom_vec_wavepacket.h
index e43c093ca3..d1a0c7c7f2 100644
--- a/src/USER-AWPMD/atom_vec_wavepacket.h
+++ b/src/USER-AWPMD/atom_vec_wavepacket.h
@@ -95,9 +95,9 @@ private:
// AWPMD- specific:
///\en electron tag: must be the same for the WPs belonging to the same electron
int *etag;
- ///\en wavepacket split coeffcients: cre, cim, size is 2*N
+ ///\en wavepacket split coefficients: cre, cim, size is 2*N
double *cs;
- ///\en force on wavepacket split coeffcients: re, im, size is 2*N
+ ///\en force on wavepacket split coefficients: re, im, size is 2*N
double *csforce;
///\en (generalized) force on velocity, size is 3*N
double *vforce;
diff --git a/src/USER-DIFFRACTION/fix_saed_vtk.h b/src/USER-DIFFRACTION/fix_saed_vtk.h
index b8cee21c35..294b003b0c 100644
--- a/src/USER-DIFFRACTION/fix_saed_vtk.h
+++ b/src/USER-DIFFRACTION/fix_saed_vtk.h
@@ -106,15 +106,15 @@ Self-explanatory.
E: Invalid fix ave/time off column
-Self-explantory.
+Self-explanatory.
E: Fix ave/time compute does not calculate a scalar
-Self-explantory.
+Self-explanatory.
E: Fix ave/time compute does not calculate a vector
-Self-explantory.
+Self-explanatory.
E: Fix ave/time compute vector is accessed out-of-range
diff --git a/src/USER-MISC/fix_grem.h b/src/USER-MISC/fix_grem.h
index 5e828a8b9f..4806505f61 100644
--- a/src/USER-MISC/fix_grem.h
+++ b/src/USER-MISC/fix_grem.h
@@ -77,7 +77,7 @@ in energy directly.
E: Must use variable energy with fix grem
-Must define an energy vartiable when applyting a dynamic
+Must define an energy variable when applying a dynamic
force during minimization.
*/
diff --git a/src/USER-MISC/improper_ring.cpp b/src/USER-MISC/improper_ring.cpp
index 5b5341f506..5a7937e4ee 100644
--- a/src/USER-MISC/improper_ring.cpp
+++ b/src/USER-MISC/improper_ring.cpp
@@ -26,7 +26,7 @@
(2002)
This potential does not affect small amplitude vibrations
but is used in an ad hoc way to prevent the onset of
- accidentially large amplitude fluctuations leading to
+ accidentally large amplitude fluctuations leading to
the occurrence of a planar conformation of the three
bonds i, i + 1 and i', an intermediate conformation
toward the chiral inversion of a methine carbon.
diff --git a/src/USER-MISC/temper_grem.h b/src/USER-MISC/temper_grem.h
index 53b8a91446..f379814c61 100644
--- a/src/USER-MISC/temper_grem.h
+++ b/src/USER-MISC/temper_grem.h
@@ -101,7 +101,7 @@ temperature (nvt or npt).
E: Too many timesteps
-The cummulative timesteps must fit in a 64-bit integer.
+The cumulative timesteps must fit in a 64-bit integer.
E: Grem could not find thermo_pe compute
diff --git a/src/USER-OMP/pair_buck_long_coul_long_omp.h b/src/USER-OMP/pair_buck_long_coul_long_omp.h
index 2dc017d8fb..f874dd9b68 100644
--- a/src/USER-OMP/pair_buck_long_coul_long_omp.h
+++ b/src/USER-OMP/pair_buck_long_coul_long_omp.h
@@ -70,15 +70,15 @@ Self-explanatory.
W: Using largest cutoff for buck/long/coul/long
-Self-exlanatory.
+Self-explanatory.
E: Cutoffs missing in pair_style buck/long/coul/long
-Self-exlanatory.
+Self-explanatory.
E: LJ6 off not supported in pair_style buck/long/coul/long
-Self-exlanatory.
+Self-explanatory.
E: Coulomb cut not supported in pair_style buck/long/coul/coul
diff --git a/src/USER-OMP/thr_data.cpp b/src/USER-OMP/thr_data.cpp
index 0e9eafb2f5..28fd27f9b8 100644
--- a/src/USER-OMP/thr_data.cpp
+++ b/src/USER-OMP/thr_data.cpp
@@ -312,7 +312,7 @@ void LAMMPS_NS::data_reduce_thr(double *dall, int nall, int nthreads, int ndim,
int m = 0;
// for architectures that have L1 D-cache line sizes of 64 bytes
- // (8 doubles) wide, explictly unroll this loop to compute 8
+ // (8 doubles) wide, explicitly unroll this loop to compute 8
// contiguous values in the array at a time
// -- modify this code based on the size of the cache line
double t0, t1, t2, t3, t4, t5, t6, t7;
diff --git a/src/USER-QTB/fix_qbmsst.h b/src/USER-QTB/fix_qbmsst.h
index 0ed210c995..3484076abf 100644
--- a/src/USER-QTB/fix_qbmsst.h
+++ b/src/USER-QTB/fix_qbmsst.h
@@ -89,7 +89,7 @@ class FixQBMSST : public Fix {
int seed; // seed for the random number generator
double f_max; // frequency cutoff
int N_f; // number of frequency grid
- double eta; // coupling coefficient bewteen shock and the qtb
+ double eta; // coupling coefficient between shock and the qtb
int beta; // average beta steps before updating the qtb temperature
double t_init; // initial qtb temperature
int qtb_set; // 1 if its a restarting qbmsst, 0 if not
diff --git a/src/USER-SMD/pair_smd_triangulated_surface.cpp b/src/USER-SMD/pair_smd_triangulated_surface.cpp
index e4a7ea1c12..eec9e517ea 100644
--- a/src/USER-SMD/pair_smd_triangulated_surface.cpp
+++ b/src/USER-SMD/pair_smd_triangulated_surface.cpp
@@ -249,7 +249,7 @@ void PairTriSurf::compute(int eflag, int vflag) {
}
/*
- * if particle comes too close to triangle, reflect its velocity and explicitely move it away
+ * if particle comes too close to triangle, reflect its velocity and explicitly move it away
*/
touch_distance = 1.0 * radius[particle];
diff --git a/src/USER-VTK/dump_custom_vtk.h b/src/USER-VTK/dump_custom_vtk.h
index 189e96aa99..f3b4a8b63e 100644
--- a/src/USER-VTK/dump_custom_vtk.h
+++ b/src/USER-VTK/dump_custom_vtk.h
@@ -147,7 +147,7 @@ output to dump file.
E: Invalid attribute in dump custom command
-Self-explantory.
+Self-explanatory.
E: Dump_modify format string is too short
@@ -186,7 +186,7 @@ cannot be used in a dump between runs.
E: Threshhold for an atom property that isn't allocated
-A dump threshhold has been requested on a quantity that is
+A dump threshold has been requested on a quantity that is
not defined by the atom style used in this simulation.
E: Dumping an atom property that isn't allocated
@@ -255,7 +255,7 @@ Number of element names must equal number of atom types.
E: Invalid attribute in dump modify command
-Self-explantory.
+Self-explanatory.
E: Could not find dump modify compute ID
@@ -313,7 +313,7 @@ E: Could not find dump modify custom atom integer property ID
Self-explanatory.
-E: Invalid dump_modify threshhold operator
+E: Invalid dump_modify threshold operator
Operator keyword used for threshold specification in not recognized.
diff --git a/src/atom.h b/src/atom.h
index 9abbb49569..0f84c8242f 100644
--- a/src/atom.h
+++ b/src/atom.h
@@ -97,7 +97,7 @@ class Atom : protected Pointers {
// molecular info
- int **nspecial; // 0,1,2 = cummulative # of 1-2,1-3,1-4 neighs
+ int **nspecial; // 0,1,2 = cumulative # of 1-2,1-3,1-4 neighs
tagint **special; // IDs of 1-2,1-3,1-4 neighs of each atom
int maxspecial; // special[nlocal][maxspecial]
diff --git a/src/atom_vec_tri.h b/src/atom_vec_tri.h
index b5dc2cfde0..390efc7c10 100644
--- a/src/atom_vec_tri.h
+++ b/src/atom_vec_tri.h
@@ -140,7 +140,7 @@ the atom coordinate.
E: Insufficient Jacobi rotations for triangle
-The calculation of the intertia tensor of the triangle failed. This
+The calculation of the inertia tensor of the triangle failed. This
should not happen if it is a reasonably shaped triangle.
*/
diff --git a/src/balance.cpp b/src/balance.cpp
index 7780b5207c..050f282dfe 100644
--- a/src/balance.cpp
+++ b/src/balance.cpp
@@ -276,7 +276,7 @@ void Balance::command(int narg, char **arg)
set_weights();
double imbinit = imbalance_factor(maxinit);
- // no load-balance if imbalance doesn't exceed threshhold
+ // no load-balance if imbalance doesn't exceed threshold
// unless switching from tiled to non tiled layout, then force rebalance
if (comm->layout == LAYOUT_TILED && style != BISECTION) {
@@ -640,7 +640,7 @@ int *Balance::bisection(int sortflag)
double *shrinkhi = &shrinkall[3];
// invoke RCB
- // then invert() to create list of proc assignements for my atoms
+ // then invert() to create list of proc assignments for my atoms
if (wtflag) {
weight = fixstore->vstore;
@@ -776,7 +776,7 @@ int Balance::shift()
bigint natoms = atom->natoms;
if (natoms == 0) return 0;
- // set delta for 1d balancing = root of threshhold
+ // set delta for 1d balancing = root of threshold
// root = # of dimensions being balanced on
double delta = pow(stopthresh,1.0/ndim) - 1.0;
@@ -865,7 +865,7 @@ int Balance::shift()
// stop if all split sums are within delta of targets
// this is a 1d test of particle count per slice
// assumption is that this is sufficient accuracy
- // for 3d imbalance factor to reach threshhold
+ // for 3d imbalance factor to reach threshold
doneflag = 1;
for (i = 1; i < np; i++)
@@ -918,7 +918,7 @@ int Balance::shift()
}
*/
- // stop at this point in bstr if imbalance factor < threshhold
+ // stop at this point in bstr if imbalance factor < threshold
// this is a true 3d test of particle count per processor
double imbfactor = imbalance_splits(max);
@@ -937,7 +937,7 @@ int Balance::shift()
N = # of slices
split = N+1 cuts between N slices
return updated count = particles per slice
- return updated sum = cummulative count below each of N+1 splits
+ return updated sum = cumulative count below each of N+1 splits
use binary search to find which slice each atom is in
------------------------------------------------------------------------- */
@@ -972,8 +972,8 @@ void Balance::tally(int dim, int n, double *split)
/* ----------------------------------------------------------------------
adjust cuts between N slices in a dim via recursive multisectioning method
split = current N+1 cuts, with 0.0 and 1.0 at end points
- sum = cummulative count up to each split
- target = desired cummulative count up to each split
+ sum = cumulative count up to each split
+ target = desired cumulative count up to each split
lo/hi = split values that bound current split
update lo/hi to reflect sums at current split values
overwrite split with new cuts
diff --git a/src/balance.h b/src/balance.h
index 7ca0354023..82941b34c0 100644
--- a/src/balance.h
+++ b/src/balance.h
@@ -49,7 +49,7 @@ class Balance : protected Pointers {
private:
int me,nprocs;
- double thresh; // threshhold to perform LB
+ double thresh; // threshold to perform LB
int style; // style of LB
int xflag,yflag,zflag; // xyz LB flags
double *user_xsplit,*user_ysplit,*user_zsplit; // params for xyz LB
@@ -63,10 +63,10 @@ class Balance : protected Pointers {
int *bdim; // XYZ for each character in bstr
double *onecost; // work vector of counts in one dim
double *allcost; // counts for slices in one dim
- double *sum; // cummulative count for slices in one dim
+ double *sum; // cumulative count for slices in one dim
double *target; // target sum for slices in one dim
double *lo,*hi; // lo/hi split coords that bound each target
- double *losum,*hisum; // cummulative counts at lo/hi coords
+ double *losum,*hisum; // cumulative counts at lo/hi coords
int rho; // 0 for geometric recursion
// 1 for density weighted recursion
diff --git a/src/compute_angle.h b/src/compute_angle.h
index d50e3e21d7..c39a2c3d27 100644
--- a/src/compute_angle.h
+++ b/src/compute_angle.h
@@ -52,7 +52,7 @@ command-line option when running LAMMPS to see the offending line.
E: Compute bond must use group all
-Bond styles accumlate energy on all atoms.
+Bond styles accumulate energy on all atoms.
E: Unrecognized bond style in compute bond command
diff --git a/src/compute_bond.h b/src/compute_bond.h
index 0f3c811218..0f6c088f1d 100644
--- a/src/compute_bond.h
+++ b/src/compute_bond.h
@@ -52,7 +52,7 @@ command-line option when running LAMMPS to see the offending line.
E: Compute bond must use group all
-Bond styles accumlate energy on all atoms.
+Bond styles accumulate energy on all atoms.
E: Unrecognized bond style in compute bond command
diff --git a/src/compute_chunk_atom.h b/src/compute_chunk_atom.h
index cbec221048..9c64e9bc7a 100644
--- a/src/compute_chunk_atom.h
+++ b/src/compute_chunk_atom.h
@@ -248,11 +248,11 @@ The lo/hi values are inconsistent.
E: Compute chunk/atom bin/sphere radius is too large for periodic box
-Radius cannot be bigger than 1/2 of any periodic dimention.
+Radius cannot be bigger than 1/2 of any periodic dimension.
E: Compute chunk/atom bin/cylinder radius is too large for periodic box
-Radius cannot be bigger than 1/2 of a non-axis periodic dimention.
+Radius cannot be bigger than 1/2 of a non-axis periodic dimension.
E: Cannot use compute chunk/atom bin z for 2d model
diff --git a/src/compute_cna_atom.h b/src/compute_cna_atom.h
index 77ea5951dc..82cf8df608 100644
--- a/src/compute_cna_atom.h
+++ b/src/compute_cna_atom.h
@@ -57,11 +57,11 @@ command-line option when running LAMMPS to see the offending line.
E: Compute cna/atom requires a pair style be defined
-Self-explantory.
+Self-explanatory.
E: Compute cna/atom cutoff is longer than pairwise cutoff
-Self-explantory.
+Self-explanatory.
W: Compute cna/atom cutoff may be too large to find ghost atom neighbors
diff --git a/src/compute_contact_atom.h b/src/compute_contact_atom.h
index bf2f1314d9..2ce7678f56 100644
--- a/src/compute_contact_atom.h
+++ b/src/compute_contact_atom.h
@@ -60,7 +60,7 @@ Self-explanatory.
E: Compute contact/atom requires a pair style be defined
-Self-explantory.
+Self-explanatory.
W: More than one compute contact/atom
diff --git a/src/compute_coord_atom.h b/src/compute_coord_atom.h
index 2ad46fa854..6c60c86266 100644
--- a/src/compute_coord_atom.h
+++ b/src/compute_coord_atom.h
@@ -67,7 +67,7 @@ command-line option when running LAMMPS to see the offending line.
E: Compute coord/atom requires a pair style be defined
-Self-explantory.
+Self-explanatory.
E: Compute coord/atom cutoff is longer than pairwise cutoff
diff --git a/src/compute_dihedral.h b/src/compute_dihedral.h
index 80b78aba98..041e1f6eae 100644
--- a/src/compute_dihedral.h
+++ b/src/compute_dihedral.h
@@ -52,7 +52,7 @@ command-line option when running LAMMPS to see the offending line.
E: Compute bond must use group all
-Bond styles accumlate energy on all atoms.
+Bond styles accumulate energy on all atoms.
E: Unrecognized bond style in compute bond command
diff --git a/src/compute_group_group.h b/src/compute_group_group.h
index 906a185cf2..c7443bda5c 100644
--- a/src/compute_group_group.h
+++ b/src/compute_group_group.h
@@ -72,7 +72,7 @@ Cannot calculate group interactions without a pair style defined.
E: Pair style does not support compute group/group
The pair_style does not have a single() function, so it cannot be
-invokded by the compute group/group command.
+invoked by the compute group/group command.
E: No Kspace style defined for compute group/group
@@ -84,6 +84,6 @@ Self-explanatory.
W: Both groups in compute group/group have a net charge; the Kspace boundary correction to energy will be non-zero
-Self-explantory.
+Self-explanatory.
*/
diff --git a/src/compute_hexorder_atom.h b/src/compute_hexorder_atom.h
index 84c80abc57..39af576cb7 100644
--- a/src/compute_hexorder_atom.h
+++ b/src/compute_hexorder_atom.h
@@ -62,7 +62,7 @@ command-line option when running LAMMPS to see the offending line.
E: Compute hexorder/atom requires a pair style be defined
-Self-explantory.
+Self-explanatory.
E: Compute hexorder/atom cutoff is longer than pairwise cutoff
diff --git a/src/compute_improper.h b/src/compute_improper.h
index 6f92f068e3..d3602677a6 100644
--- a/src/compute_improper.h
+++ b/src/compute_improper.h
@@ -52,7 +52,7 @@ command-line option when running LAMMPS to see the offending line.
E: Compute bond must use group all
-Bond styles accumlate energy on all atoms.
+Bond styles accumulate energy on all atoms.
E: Unrecognized bond style in compute bond command
diff --git a/src/compute_orientorder_atom.h b/src/compute_orientorder_atom.h
index 81b08dbddc..eb814e9c1c 100644
--- a/src/compute_orientorder_atom.h
+++ b/src/compute_orientorder_atom.h
@@ -72,7 +72,7 @@ command-line option when running LAMMPS to see the offending line.
E: Compute orientorder/atom requires a pair style be defined
-Self-explantory.
+Self-explanatory.
E: Compute orientorder/atom cutoff is longer than pairwise cutoff
diff --git a/src/compute_pair.h b/src/compute_pair.h
index 37f026f1ee..91702748a6 100644
--- a/src/compute_pair.h
+++ b/src/compute_pair.h
@@ -54,7 +54,7 @@ command-line option when running LAMMPS to see the offending line.
E: Compute pair must use group all
-Pair styles accumlate energy on all atoms.
+Pair styles accumulate energy on all atoms.
E: Unrecognized pair style in compute pair command
diff --git a/src/compute_property_chunk.h b/src/compute_property_chunk.h
index 077129a06e..48211ec91b 100644
--- a/src/compute_property_chunk.h
+++ b/src/compute_property_chunk.h
@@ -81,15 +81,15 @@ It will only store IDs if its compress option is enabled.
E: Compute chunk/atom stores no coord1 for compute property/chunk
-Only certain binning options for comptue chunk/atom store coordinates.
+Only certain binning options for compute chunk/atom store coordinates.
E: Compute chunk/atom stores no coord2 for compute property/chunk
-Only certain binning options for comptue chunk/atom store coordinates.
+Only certain binning options for compute chunk/atom store coordinates.
E: Compute chunk/atom stores no coord3 for compute property/chunk
-Only certain binning options for comptue chunk/atom store coordinates.
+Only certain binning options for compute chunk/atom store coordinates.
E: Invalid keyword in compute property/chunk command
diff --git a/src/compute_property_local.h b/src/compute_property_local.h
index fbc1ea3097..2b0dda5a10 100644
--- a/src/compute_property_local.h
+++ b/src/compute_property_local.h
@@ -99,7 +99,7 @@ command-line option when running LAMMPS to see the offending line.
E: Compute property/local cannot use these inputs together
Only inputs that generate the same number of datums can be used
-togther. E.g. bond and angle quantities cannot be mixed.
+together. E.g. bond and angle quantities cannot be mixed.
E: Invalid keyword in compute property/local command
diff --git a/src/create_atoms.h b/src/create_atoms.h
index 721b31e8c5..56e9c65b89 100644
--- a/src/create_atoms.h
+++ b/src/create_atoms.h
@@ -88,7 +88,7 @@ is the number of atom types.
E: Molecule template ID for create_atoms does not exist
-Self-explantory.
+Self-explanatory.
W: Molecule template for create_atoms has multiple molecules
diff --git a/src/dump_custom.h b/src/dump_custom.h
index 38567b7523..8067415834 100644
--- a/src/dump_custom.h
+++ b/src/dump_custom.h
@@ -206,7 +206,7 @@ output to dump file.
E: Invalid attribute in dump custom command
-Self-explantory.
+Self-explanatory.
E: Dump_modify format string is too short
@@ -314,7 +314,7 @@ Number of element names must equal number of atom types.
E: Invalid attribute in dump modify command
-Self-explantory.
+Self-explanatory.
E: Could not find dump modify compute ID
diff --git a/src/dump_local.h b/src/dump_local.h
index 6f8dc09f57..ffca02b381 100644
--- a/src/dump_local.h
+++ b/src/dump_local.h
@@ -125,7 +125,7 @@ Every column of output must be the same length.
E: Invalid attribute in dump local command
-Self-explantory.
+Self-explanatory.
E: Dump local compute does not compute local info
diff --git a/src/fix_addforce.h b/src/fix_addforce.h
index d19c0db0d1..f06ed5ed4c 100644
--- a/src/fix_addforce.h
+++ b/src/fix_addforce.h
@@ -85,7 +85,7 @@ in energy directly.
E: Must use variable energy with fix addforce
-Must define an energy vartiable when applyting a dynamic
+Must define an energy variable when applying a dynamic
force during minimization.
*/
diff --git a/src/fix_ave_histo_weight.cpp b/src/fix_ave_histo_weight.cpp
index 277a57a48d..37dd8c9898 100644
--- a/src/fix_ave_histo_weight.cpp
+++ b/src/fix_ave_histo_weight.cpp
@@ -126,7 +126,7 @@ void FixAveHistoWeight::end_of_step()
modify->clearstep_compute();
- // calcualte weight factors which are 2nd value (i = 1)
+ // calculate weight factors which are 2nd value (i = 1)
double weight = 0.0;
double *weights = NULL;
diff --git a/src/fix_ave_time.h b/src/fix_ave_time.h
index d771036530..0357815f0c 100644
--- a/src/fix_ave_time.h
+++ b/src/fix_ave_time.h
@@ -101,15 +101,15 @@ Self-explanatory.
E: Invalid fix ave/time off column
-Self-explantory.
+Self-explanatory.
E: Fix ave/time compute does not calculate a scalar
-Self-explantory.
+Self-explanatory.
E: Fix ave/time compute does not calculate a vector
-Self-explantory.
+Self-explanatory.
E: Fix ave/time compute vector is accessed out-of-range
diff --git a/src/fix_balance.cpp b/src/fix_balance.cpp
index 33054e0e3b..7e0aa681bb 100644
--- a/src/fix_balance.cpp
+++ b/src/fix_balance.cpp
@@ -189,7 +189,7 @@ void FixBalance::setup_pre_exchange()
domain->reset_box();
if (domain->triclinic) domain->lamda2x(atom->nlocal);
- // perform a rebalance if threshhold exceeded
+ // perform a rebalance if threshold exceeded
balance->set_weights();
imbnow = balance->imbalance_factor(maxloadperproc);
@@ -224,7 +224,7 @@ void FixBalance::pre_exchange()
domain->reset_box();
if (domain->triclinic) domain->lamda2x(atom->nlocal);
- // perform a rebalance if threshhold exceeded
+ // perform a rebalance if threshold exceeded
// if weight variable is used, wrap weight setting in clear/add compute
if (balance->varflag) modify->clearstep_compute();
diff --git a/src/fix_deform.h b/src/fix_deform.h
index efbecfd636..cdda1b8547 100644
--- a/src/fix_deform.h
+++ b/src/fix_deform.h
@@ -107,7 +107,7 @@ Only one fix deform can be defined at a time.
E: Variable name for fix deform does not exist
-Self-explantory.
+Self-explanatory.
E: Variable for fix deform is invalid style
diff --git a/src/fix_group.h b/src/fix_group.h
index 5815d31459..308171e3fd 100644
--- a/src/fix_group.h
+++ b/src/fix_group.h
@@ -80,7 +80,7 @@ W: One or more dynamic groups may not be updated at correct point in timestep
If there are other fixes that act immediately after the intitial stage
of time integration within a timestep (i.e. after atoms move), then
the command that sets up the dynamic group should appear after those
-fixes. This will insure that dynamic group assignements are made
+fixes. This will insure that dynamic group assignments are made
after all atoms have moved.
*/
diff --git a/src/fix_shear_history.cpp b/src/fix_shear_history.cpp
index e885392c41..21942d753f 100644
--- a/src/fix_shear_history.cpp
+++ b/src/fix_shear_history.cpp
@@ -38,7 +38,7 @@ FixShearHistory::FixShearHistory(LAMMPS *lmp, int narg, char **arg) :
npartner(NULL), partner(NULL), shearpartner(NULL), pair(NULL),
ipage(NULL), dpage(NULL)
{
- if (narg != 4) error->all(FLERR,"Illegal fix SHEAR_HISTORY commmand");
+ if (narg != 4) error->all(FLERR,"Illegal fix SHEAR_HISTORY command");
restart_peratom = 1;
create_attribute = 1;
diff --git a/src/neighbor.cpp b/src/neighbor.cpp
index e0b84cc410..dc85d0524b 100644
--- a/src/neighbor.cpp
+++ b/src/neighbor.cpp
@@ -918,7 +918,7 @@ void Neighbor::morph_other()
requests[i-1]->historylist = i;
}
- // if respaouter, point all asociated rRESPA lists at each other
+ // if respaouter, point all associated rRESPA lists at each other
if (irq->respaouter) {
if (requests[i-1]->respainner) {
diff --git a/src/output.h b/src/output.h
index cc282cbedd..de5eaaa70b 100644
--- a/src/output.h
+++ b/src/output.h
@@ -172,7 +172,7 @@ W: New thermo_style command, previous thermo_modify settings will be lost
If a thermo_style command is used after a thermo_modify command, the
settings changed by the thermo_modify command will be reset to their
-default values. This is because the thermo_modify commmand acts on
+default values. This is because the thermo_modify command acts on
the currently defined thermo style, and a thermo_style command creates
a new style.
diff --git a/src/pair_gauss.cpp b/src/pair_gauss.cpp
index c7b77c3270..c8f6afdacc 100644
--- a/src/pair_gauss.cpp
+++ b/src/pair_gauss.cpp
@@ -168,7 +168,7 @@ void PairGauss::settings(int narg, char **arg)
cut_global = force->numeric(FLERR,arg[0]);
- // reset cutoffs that have been explicity set
+ // reset cutoffs that have been explicitly set
if (allocated) {
int i,j;
diff --git a/src/run.h b/src/run.h
index 5f6accbfac..727b23f1c4 100644
--- a/src/run.h
+++ b/src/run.h
@@ -71,6 +71,6 @@ Self-explanatory.
E: Too many timesteps
-The cummulative timesteps must fit in a 64-bit integer.
+The cumulative timesteps must fit in a 64-bit integer.
*/
diff --git a/src/thermo.h b/src/thermo.h
index d6b3822efe..d87e8fce3d 100644
--- a/src/thermo.h
+++ b/src/thermo.h
@@ -95,7 +95,7 @@ class Thermo : protected Pointers {
char **id_fix; // their IDs
class Fix **fixes; // list of ptrs to the Fix objects
- int nvariable; // # of variables evaulated by thermo
+ int nvariable; // # of variables evaluated by thermo
char **id_variable; // list of variable names
int *variables; // list of Variable indices
diff --git a/src/variable.cpp b/src/variable.cpp
index 67c8951974..3eea50a463 100644
--- a/src/variable.cpp
+++ b/src/variable.cpp
@@ -1004,7 +1004,7 @@ void Variable::compute_atom(int ivar, int igroup,
return length of vector and result pointer to vector values
if length == 0 or -1 (mismatch), generate an error
if variable already computed on this timestep, just return
- else evaulate the formula and its length, store results in VecVar entry
+ else evaluate the formula and its length, store results in VecVar entry
------------------------------------------------------------------------- */
int Variable::compute_vector(int ivar, double **result)
@@ -2747,7 +2747,7 @@ double Variable::collapse_tree(Tree *tree)
/* ----------------------------------------------------------------------
evaluate an atom-style or vector-style variable parse tree
index I = atom I or vector index I
- tree was created by one-time parsing of formula string via evaulate()
+ tree was created by one-time parsing of formula string via evaluate()
customize by adding a function:
sqrt(),exp(),ln(),log(),sin(),cos(),tan(),asin(),acos(),atan(),
atan2(y,x),random(x,y,z),normal(x,y,z),ceil(),floor(),round(),
diff --git a/src/variable.h b/src/variable.h
index 042ce5b3fe..cda13dc9d3 100644
--- a/src/variable.h
+++ b/src/variable.h
@@ -355,7 +355,7 @@ Self-explanatory.
E: Non digit character between brackets in variable
-Self-explantory.
+Self-explanatory.
E: Mismatched brackets in variable
From 778a79b8eef75981a37f48d2bf8875d4ac6ea50c Mon Sep 17 00:00:00 2001
From: Richard Berger
Date: Sun, 5 Mar 2017 20:39:04 -0500
Subject: [PATCH 05/15] Fix typos in examples folder
---
examples/KAPPA/README | 2 +-
examples/USER/lb/confined_colloid/in.confined_colloids | 2 +-
examples/USER/lb/microrheology/in.microrheology_default_gamma | 2 +-
examples/USER/lb/microrheology/in.microrheology_set_gamma | 2 +-
examples/USER/lb/planewall/in.planewall_default_gamma | 2 +-
examples/USER/lb/planewall/in.planewall_set_gamma | 2 +-
examples/USER/lb/polymer/in.polymer_default_gamma | 2 +-
examples/USER/lb/polymer/in.polymer_setgamma | 2 +-
examples/VISCOSITY/README | 4 ++--
9 files changed, 10 insertions(+), 10 deletions(-)
diff --git a/examples/KAPPA/README b/examples/KAPPA/README
index ee70766d94..d025797bfa 100644
--- a/examples/KAPPA/README
+++ b/examples/KAPPA/README
@@ -85,7 +85,7 @@ Kappa = 3.45
(4) in.mp
dQ = 15087 / 100 / 18.82^2 / 2
- 15087 = cummulative delta energy, tallied by fix thermal/conductivity
+ 15087 = cumulative delta energy, tallied by fix thermal/conductivity
100 = 20,000 steps at 0.005 tau timestep = run time in tau
xy box area = 18.82^2
divide by 2 since energy flux goes in 2 directions due to periodic z
diff --git a/examples/USER/lb/confined_colloid/in.confined_colloids b/examples/USER/lb/confined_colloid/in.confined_colloids
index 37cd52e621..b7b8958e9a 100755
--- a/examples/USER/lb/confined_colloid/in.confined_colloids
+++ b/examples/USER/lb/confined_colloid/in.confined_colloids
@@ -67,7 +67,7 @@ timestep 0.0006
#---------------------------------------------------------------------------
# Create a lattice-Boltzmann fluid covering the simulation domain.
# This fluid feels a force due to the particles specified through FluidAtoms
-# (however, this fix does not explicity apply a force back on to these
+# (however, this fix does not explicitly apply a force back on to these
# particles...this is accomplished through the use of the viscous_lb fix).
# Use the standard LB integration scheme, a fluid density = 1.0,
# fluid viscosity = 1.0, lattice spacing dx=0.06, and mass unit, dm=0.00003.
diff --git a/examples/USER/lb/microrheology/in.microrheology_default_gamma b/examples/USER/lb/microrheology/in.microrheology_default_gamma
index 4937a2cb20..8c3b684ff7 100755
--- a/examples/USER/lb/microrheology/in.microrheology_default_gamma
+++ b/examples/USER/lb/microrheology/in.microrheology_default_gamma
@@ -61,7 +61,7 @@ group FluidAtoms type 2
#---------------------------------------------------------------------------
# Create a lattice-Boltzmann fluid covering the simulation domain.
# This fluid feels a force due to the particles specified through FluidAtoms
-# (however, this fix does not explicity apply a force back on to these
+# (however, this fix does not explicitly apply a force back on to these
# particles...this is accomplished through the use of the viscous_lb fix).
# Use the standard LB integration scheme, a fluid viscosity = 1.0, fluid
# density= 0.0009982071, lattice spacing dx=1.2, and mass unit, dm=0.003.
diff --git a/examples/USER/lb/microrheology/in.microrheology_set_gamma b/examples/USER/lb/microrheology/in.microrheology_set_gamma
index 7b84bdaf63..1f744220f0 100755
--- a/examples/USER/lb/microrheology/in.microrheology_set_gamma
+++ b/examples/USER/lb/microrheology/in.microrheology_set_gamma
@@ -61,7 +61,7 @@ group FluidAtoms type 2
#---------------------------------------------------------------------------
# Create a lattice-Boltzmann fluid covering the simulation domain.
# This fluid feels a force due to the particles specified through FluidAtoms
-# (however, this fix does not explicity apply a force back on to these
+# (however, this fix does not explicitly apply a force back on to these
# particles...this is accomplished through the use of the rigid_pc_sphere
# fix).
# Use the LB integration scheme of Ollila et. al. (for stability reasons,
diff --git a/examples/USER/lb/planewall/in.planewall_default_gamma b/examples/USER/lb/planewall/in.planewall_default_gamma
index bf0cfcb3c7..83f42ebddd 100755
--- a/examples/USER/lb/planewall/in.planewall_default_gamma
+++ b/examples/USER/lb/planewall/in.planewall_default_gamma
@@ -54,7 +54,7 @@ velocity all set 0.0 0.0 0.0 units box
#----------------------------------------------------------------------------
# Create a lattice-Boltzmann fluid covering the simulation domain.
# All of the particles in the simulation apply a force to the fluid.
-# (however, this fix does not explicity apply a force back on to these
+# (however, this fix does not explicitly apply a force back on to these
# particles...this is accomplished through the use of the viscous_lb fix.
# Use the standard LB integration scheme, a fluid density = 1.0,
# fluid viscosity = 1.0, lattice spacing dx=4.0, and mass unit, dm=10.0.
diff --git a/examples/USER/lb/planewall/in.planewall_set_gamma b/examples/USER/lb/planewall/in.planewall_set_gamma
index a048411b01..47d8266a1c 100755
--- a/examples/USER/lb/planewall/in.planewall_set_gamma
+++ b/examples/USER/lb/planewall/in.planewall_set_gamma
@@ -54,7 +54,7 @@ velocity all set 0.0 0.0 0.0 units box
#----------------------------------------------------------------------------
# Create a lattice-Boltzmann fluid covering the simulation domain.
# All of the particles in the simulation apply a force to the fluid.
-# (however, this fix does not explicity apply a force back on to these
+# (however, this fix does not explicitly apply a force back on to these
# particles...this is accomplished through the use of the rigid_pc_sphere
# fix).
# Use the LB integration scheme of Ollila et. al. (for stability reasons,
diff --git a/examples/USER/lb/polymer/in.polymer_default_gamma b/examples/USER/lb/polymer/in.polymer_default_gamma
index 4344dc0ef8..cd48a8ccf1 100755
--- a/examples/USER/lb/polymer/in.polymer_default_gamma
+++ b/examples/USER/lb/polymer/in.polymer_default_gamma
@@ -58,7 +58,7 @@ group FluidAtoms type 2
#---------------------------------------------------------------------------
# Create a lattice-Boltzmann fluid covering the simulation domain.
# This fluid feels a force due to the particles specified through FluidAtoms
-# (however, this fix does not explicity apply a force back on to these
+# (however, this fix does not explicitly apply a force back on to these
# particles. This is accomplished through the use of the lb/viscous
# fix).
# Uses the standard LB integration scheme, fluid viscosity = 0.023333333,
diff --git a/examples/USER/lb/polymer/in.polymer_setgamma b/examples/USER/lb/polymer/in.polymer_setgamma
index b5108a60fa..fd5aeaa83e 100755
--- a/examples/USER/lb/polymer/in.polymer_setgamma
+++ b/examples/USER/lb/polymer/in.polymer_setgamma
@@ -62,7 +62,7 @@ group FluidAtoms type 2
#---------------------------------------------------------------------------
# Create a lattice-Boltzmann fluid covering the simulation domain.
# This fluid feels a force due to the particles specified through FluidAtoms
-# (however, this fix does not explicity apply a force back on to these
+# (however, this fix does not explicitly apply a force back on to these
# particles. This is accomplished through the use of the rigid_pc_sphere
# fix).
# Use the LB integration scheme of Ollila et. al. (for stability reasons,
diff --git a/examples/VISCOSITY/README b/examples/VISCOSITY/README
index 88b874cd65..98ca9fbe3d 100644
--- a/examples/VISCOSITY/README
+++ b/examples/VISCOSITY/README
@@ -74,7 +74,7 @@ eta = 0.997 = running average output as last log file column
eta is computed directly within the script, by performing a time
integration of the formula discussed in Section 6.21 of the manual,
-analagous to the formula for thermal conductivity given on the compute
+analogous to the formula for thermal conductivity given on the compute
heat/flux doc page - the resulting value prints at the end of the run
and is in the log file
@@ -84,7 +84,7 @@ eta = 1.07
eta is computed directly within the script, by performing a time
integration of the formula discussed in Section 6.21 of the manual,
-analagous to the formula for thermal conductivity given on the compute
+analogous to the formula for thermal conductivity given on the compute
heat/flux doc page - the resulting value prints at the end of the run
and is in the log file
From 17486a9319f851ae681c944adeb3a1340387404e Mon Sep 17 00:00:00 2001
From: Richard Berger
Date: Sun, 5 Mar 2017 21:16:21 -0500
Subject: [PATCH 06/15] Convert USER/lb/polymer files to UNIX line endings and
remove trailing whitespace
---
examples/USER/lb/polymer/data.polymer | 2080 ++++++++---------
.../USER/lb/polymer/in.polymer_default_gamma | 214 +-
examples/USER/lb/polymer/in.polymer_setgamma | 210 +-
3 files changed, 1252 insertions(+), 1252 deletions(-)
diff --git a/examples/USER/lb/polymer/data.polymer b/examples/USER/lb/polymer/data.polymer
index d3c39ad39b..da974446cb 100755
--- a/examples/USER/lb/polymer/data.polymer
+++ b/examples/USER/lb/polymer/data.polymer
@@ -1,1040 +1,1040 @@
-Position data for a 32-bead polymer consisting of 31-vertex extended spheres
-
-992 atoms
-31 bonds
-
-2 atom types
-1 bond types
-
-0 40 xlo xhi
-0 40 ylo yhi
-0 40 zlo zhi
-
-Atoms
-
-1 1 21.0439 24.2646 23.1337 1
-2 2 20.3839 24.2646 23.3669 1
-3 2 20.8557 23.6306 23.3629 1
-4 2 21.5866 23.883 23.3569 1
-5 2 21.5866 24.6463 23.3569 1
-6 2 20.8558 24.8987 23.3629 1
-7 2 20.3839 24.2646 22.9005 1
-8 2 20.8558 23.6306 22.9045 1
-9 2 21.5866 23.883 22.9105 1
-10 2 21.5866 24.6463 22.9105 1
-11 2 20.8557 24.8987 22.9045 1
-12 2 21.6158 24.2646 23.5374 1
-13 2 21.2339 24.8002 23.5425 1
-14 2 20.595 24.6026 23.5511 1
-15 2 20.595 23.9267 23.5511 1
-16 2 21.2339 23.7291 23.5425 1
-17 2 21.6158 24.2646 22.73 1
-18 2 21.2339 24.8002 22.7249 1
-19 2 20.595 24.6026 22.7163 1
-20 2 20.595 23.9267 22.7163 1
-21 2 21.2339 23.7291 22.7249 1
-22 2 21.3444 24.2646 23.7659 1
-23 2 21.1464 24.5394 23.7693 1
-24 2 20.8215 24.436 23.7749 1
-25 2 20.8215 24.0933 23.7749 1
-26 2 21.1464 23.9899 23.7693 1
-27 2 21.3444 24.2646 22.5015 1
-28 2 21.1464 24.5394 22.4981 1
-29 2 20.8214 24.436 22.4925 1
-30 2 20.8214 24.0933 22.4925 1
-31 2 21.1464 23.9899 22.4981 1
-32 1 21.5789 25.5745 23.3738 2
-33 2 20.9189 25.5745 23.6069 2
-34 2 21.3907 24.9404 23.603 2
-35 2 22.1216 25.1929 23.597 2
-36 2 22.1216 25.9562 23.597 2
-37 2 21.3907 26.2086 23.603 2
-38 2 20.9189 25.5745 23.1406 2
-39 2 21.3907 24.9404 23.1446 2
-40 2 22.1216 25.1929 23.1505 2
-41 2 22.1216 25.9562 23.1505 2
-42 2 21.3907 26.2086 23.1446 2
-43 2 22.1507 25.5745 23.7775 2
-44 2 21.7688 26.1101 23.7826 2
-45 2 21.13 25.9125 23.7912 2
-46 2 21.13 25.2365 23.7912 2
-47 2 21.7688 25.039 23.7826 2
-48 2 22.1507 25.5745 22.97 2
-49 2 21.7688 26.1101 22.965 2
-50 2 21.13 25.9125 22.9563 2
-51 2 21.13 25.2365 22.9563 2
-52 2 21.7688 25.039 22.965 2
-53 2 21.8794 25.5745 24.006 2
-54 2 21.6814 25.8493 24.0094 2
-55 2 21.3564 25.7458 24.015 2
-56 2 21.3564 25.4032 24.015 2
-57 2 21.6814 25.2997 24.0094 2
-58 2 21.8794 25.5745 22.7416 2
-59 2 21.6814 25.8493 22.7382 2
-60 2 21.3564 25.7458 22.7326 2
-61 2 21.3564 25.4032 22.7326 2
-62 2 21.6814 25.2997 22.7382 2
-63 1 22.5101 25.4302 22.2914 3
-64 2 21.8501 25.4302 22.5246 3
-65 2 22.322 24.7961 22.5206 3
-66 2 23.0528 25.0485 22.5146 3
-67 2 23.0528 25.8118 22.5146 3
-68 2 22.322 26.0643 22.5206 3
-69 2 21.8501 25.4302 22.0582 3
-70 2 22.322 24.7961 22.0622 3
-71 2 23.0528 25.0485 22.0682 3
-72 2 23.0528 25.8118 22.0682 3
-73 2 22.322 26.0643 22.0622 3
-74 2 23.082 25.4302 22.6951 3
-75 2 22.7001 25.9657 22.7002 3
-76 2 22.0612 25.7682 22.7088 3
-77 2 22.0612 25.0922 22.7088 3
-78 2 22.7001 24.8947 22.7002 3
-79 2 23.082 25.4302 21.8877 3
-80 2 22.7001 25.9657 21.8826 3
-81 2 22.0612 25.7682 21.874 3
-82 2 22.0612 25.0922 21.874 3
-83 2 22.7001 24.8947 21.8826 3
-84 2 22.8107 25.4302 22.9236 3
-85 2 22.6126 25.705 22.927 3
-86 2 22.2877 25.6015 22.9326 3
-87 2 22.2877 25.2589 22.9326 3
-88 2 22.6126 25.1554 22.927 3
-89 2 22.8107 25.4302 21.6592 3
-90 2 22.6126 25.705 21.6558 3
-91 2 22.2877 25.6015 21.6502 3
-92 2 22.2877 25.2589 21.6502 3
-93 2 22.6126 25.1554 21.6558 3
-94 1 23.895 25.0537 22.2951 4
-95 2 23.235 25.0537 22.5282 4
-96 2 23.7068 24.4196 22.5243 4
-97 2 24.4377 24.672 22.5183 4
-98 2 24.4377 25.4353 22.5183 4
-99 2 23.7068 25.6877 22.5243 4
-100 2 23.235 25.0537 22.0619 4
-101 2 23.7068 24.4196 22.0659 4
-102 2 24.4377 24.672 22.0718 4
-103 2 24.4377 25.4353 22.0718 4
-104 2 23.7068 25.6877 22.0659 4
-105 2 24.4668 25.0537 22.6988 4
-106 2 24.0849 25.5892 22.7039 4
-107 2 23.4461 25.3916 22.7125 4
-108 2 23.4461 24.7157 22.7125 4
-109 2 24.0849 24.5181 22.7039 4
-110 2 24.4668 25.0537 21.8913 4
-111 2 24.0849 25.5892 21.8863 4
-112 2 23.4461 25.3916 21.8776 4
-113 2 23.4461 24.7157 21.8776 4
-114 2 24.0849 24.5181 21.8863 4
-115 2 24.1955 25.0537 22.9273 4
-116 2 23.9975 25.3284 22.9307 4
-117 2 23.6725 25.225 22.9363 4
-118 2 23.6725 24.8823 22.9363 4
-119 2 23.9975 24.7789 22.9307 4
-120 2 24.1955 25.0537 21.6629 4
-121 2 23.9975 25.3284 21.6595 4
-122 2 23.6725 25.225 21.6538 4
-123 2 23.6725 24.8823 21.6538 4
-124 2 23.9975 24.7789 21.6595 4
-125 1 24.6582 26.0898 21.6598 5
-126 2 23.9982 26.0898 21.893 5
-127 2 24.4701 25.4557 21.889 5
-128 2 25.2009 25.7081 21.883 5
-129 2 25.2009 26.4714 21.883 5
-130 2 24.4701 26.7238 21.889 5
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-591 2 29.4717 28.895 29.603 20
-592 2 29.9436 28.2609 29.5991 20
-593 2 30.6744 28.5133 29.5931 20
-594 2 30.6744 29.2766 29.5931 20
-595 2 29.9436 29.5291 29.5991 20
-596 2 29.4717 28.895 29.1367 20
-597 2 29.9436 28.2609 29.1406 20
-598 2 30.6744 28.5133 29.1466 20
-599 2 30.6744 29.2766 29.1466 20
-600 2 29.9436 29.5291 29.1406 20
-601 2 30.7036 28.895 29.7736 20
-602 2 30.3217 29.4305 29.7786 20
-603 2 29.6828 29.233 29.7873 20
-604 2 29.6828 28.557 29.7873 20
-605 2 30.3217 28.3594 29.7786 20
-606 2 30.7036 28.895 28.9661 20
-607 2 30.3217 29.4305 28.961 20
-608 2 29.6828 29.233 28.9524 20
-609 2 29.6828 28.557 28.9524 20
-610 2 30.3217 28.3594 28.961 20
-611 2 30.4322 28.895 30.0021 20
-612 2 30.2342 29.1698 30.0054 20
-613 2 29.9093 29.0663 30.0111 20
-614 2 29.9093 28.7237 30.0111 20
-615 2 30.2342 28.6202 30.0054 20
-616 2 30.4322 28.895 28.7376 20
-617 2 30.2342 29.1698 28.7342 20
-618 2 29.9093 29.0663 28.7286 20
-619 2 29.9093 28.7237 28.7286 20
-620 2 30.2342 28.6202 28.7342 20
-621 1 31.4259 29.456 29.1053 21
-622 2 30.7659 29.456 29.3385 21
-623 2 31.2377 28.8219 29.3345 21
-624 2 31.9686 29.0744 29.3285 21
-625 2 31.9686 29.8377 29.3285 21
-626 2 31.2377 30.0901 29.3345 21
-627 2 30.7659 29.456 28.8721 21
-628 2 31.2377 28.8219 28.8761 21
-629 2 31.9686 29.0744 28.8821 21
-630 2 31.9686 29.8377 28.8821 21
-631 2 31.2377 30.0901 28.8761 21
-632 2 31.9977 29.456 29.509 21
-633 2 31.6158 29.9915 29.5141 21
-634 2 30.977 29.794 29.5227 21
-635 2 30.977 29.118 29.5227 21
-636 2 31.6158 28.9205 29.5141 21
-637 2 31.9977 29.456 28.7016 21
-638 2 31.6158 29.9915 28.6965 21
-639 2 30.977 29.794 28.6878 21
-640 2 30.977 29.118 28.6878 21
-641 2 31.6158 28.9205 28.6965 21
-642 2 31.7264 29.456 29.7375 21
-643 2 31.5284 29.7308 29.7409 21
-644 2 31.2034 29.6273 29.7465 21
-645 2 31.2034 29.2847 29.7465 21
-646 2 31.5284 29.1812 29.7409 21
-647 2 31.7264 29.456 28.4731 21
-648 2 31.5284 29.7308 28.4697 21
-649 2 31.2034 29.6273 28.4641 21
-650 2 31.2034 29.2847 28.4641 21
-651 2 31.5284 29.1812 28.4697 21
-652 1 31.3008 28.2326 28.3655 22
-653 2 30.6408 28.2326 28.5987 22
-654 2 31.1126 27.5985 28.5947 22
-655 2 31.8435 27.851 28.5888 22
-656 2 31.8435 28.6143 28.5888 22
-657 2 31.1126 28.8667 28.5947 22
-658 2 30.6408 28.2326 28.1324 22
-659 2 31.1126 27.5985 28.1363 22
-660 2 31.8435 27.851 28.1423 22
-661 2 31.8435 28.6143 28.1423 22
-662 2 31.1126 28.8667 28.1363 22
-663 2 31.8726 28.2326 28.7693 22
-664 2 31.4907 28.7682 28.7743 22
-665 2 30.8519 28.5706 28.783 22
-666 2 30.8519 27.8946 28.783 22
-667 2 31.4907 27.6971 28.7743 22
-668 2 31.8726 28.2326 27.9618 22
-669 2 31.4907 28.7682 27.9567 22
-670 2 30.8519 28.5706 27.9481 22
-671 2 30.8519 27.8946 27.9481 22
-672 2 31.4907 27.6971 27.9567 22
-673 2 31.6013 28.2326 28.9977 22
-674 2 31.4033 28.5074 29.0011 22
-675 2 31.0783 28.4039 29.0067 22
-676 2 31.0783 28.0613 29.0067 22
-677 2 31.4033 27.9578 29.0011 22
-678 2 31.6013 28.2326 27.7333 22
-679 2 31.4033 28.5074 27.7299 22
-680 2 31.0783 28.4039 27.7243 22
-681 2 31.0783 28.0613 27.7243 22
-682 2 31.4033 27.9578 27.7299 22
-683 1 32.1926 27.1371 28.1123 23
-684 2 31.5325 27.1371 28.3454 23
-685 2 32.0044 26.503 28.3415 23
-686 2 32.7353 26.7554 28.3355 23
-687 2 32.7353 27.5187 28.3355 23
-688 2 32.0044 27.7712 28.3415 23
-689 2 31.5325 27.1371 27.8791 23
-690 2 32.0044 26.503 27.8831 23
-691 2 32.7353 26.7554 27.8891 23
-692 2 32.7353 27.5187 27.8891 23
-693 2 32.0044 27.7712 27.8831 23
-694 2 32.7644 27.1371 28.516 23
-695 2 32.3825 27.6726 28.5211 23
-696 2 31.7437 27.4751 28.5297 23
-697 2 31.7437 26.7991 28.5297 23
-698 2 32.3825 26.6015 28.5211 23
-699 2 32.7644 27.1371 27.7086 23
-700 2 32.3825 27.6726 27.7035 23
-701 2 31.7437 27.4751 27.6948 23
-702 2 31.7437 26.7991 27.6948 23
-703 2 32.3825 26.6015 27.7035 23
-704 2 32.4931 27.1371 28.7445 23
-705 2 32.2951 27.4119 28.7479 23
-706 2 31.9701 27.3084 28.7535 23
-707 2 31.9701 26.9658 28.7535 23
-708 2 32.2951 26.8623 28.7479 23
-709 2 32.4931 27.1371 27.4801 23
-710 2 32.2951 27.4119 27.4767 23
-711 2 31.9701 27.3084 27.4711 23
-712 2 31.9701 26.9658 27.4711 23
-713 2 32.2951 26.8623 27.4767 23
-714 1 33.0167 26.5192 29.1116 24
-715 2 32.3567 26.5192 29.3447 24
-716 2 32.8285 25.8851 29.3408 24
-717 2 33.5594 26.1375 29.3348 24
-718 2 33.5594 26.9008 29.3348 24
-719 2 32.8285 27.1532 29.3408 24
-720 2 32.3567 26.5192 28.8784 24
-721 2 32.8285 25.8851 28.8824 24
-722 2 33.5594 26.1375 28.8883 24
-723 2 33.5594 26.9008 28.8883 24
-724 2 32.8285 27.1532 28.8824 24
-725 2 33.5885 26.5192 29.5153 24
-726 2 33.2066 27.0547 29.5204 24
-727 2 32.5678 26.8571 29.529 24
-728 2 32.5678 26.1812 29.529 24
-729 2 33.2066 25.9836 29.5204 24
-730 2 33.5885 26.5192 28.7078 24
-731 2 33.2066 27.0547 28.7028 24
-732 2 32.5678 26.8571 28.6941 24
-733 2 32.5678 26.1812 28.6941 24
-734 2 33.2066 25.9836 28.7028 24
-735 2 33.3172 26.5192 29.7438 24
-736 2 33.1192 26.7939 29.7472 24
-737 2 32.7942 26.6905 29.7528 24
-738 2 32.7942 26.3478 29.7528 24
-739 2 33.1192 26.2444 29.7472 24
-740 2 33.3172 26.5192 28.4794 24
-741 2 33.1192 26.7939 28.476 24
-742 2 32.7942 26.6905 28.4704 24
-743 2 32.7942 26.3478 28.4704 24
-744 2 33.1192 26.2444 28.476 24
-745 1 33.3109 26.7605 30.4953 25
-746 2 32.6509 26.7605 30.7285 25
-747 2 33.1227 26.1264 30.7246 25
-748 2 33.8536 26.3789 30.7186 25
-749 2 33.8536 27.1422 30.7186 25
-750 2 33.1227 27.3946 30.7246 25
-751 2 32.6509 26.7605 30.2622 25
-752 2 33.1227 26.1264 30.2661 25
-753 2 33.8536 26.3789 30.2721 25
-754 2 33.8536 27.1422 30.2721 25
-755 2 33.1227 27.3946 30.2661 25
-756 2 33.8827 26.7605 30.8991 25
-757 2 33.5008 27.2961 30.9041 25
-758 2 32.862 27.0985 30.9128 25
-759 2 32.862 26.4226 30.9128 25
-760 2 33.5008 26.225 30.9041 25
-761 2 33.8827 26.7605 30.0916 25
-762 2 33.5008 27.2961 30.0865 25
-763 2 32.862 27.0985 30.0779 25
-764 2 32.862 26.4226 30.0779 25
-765 2 33.5008 26.225 30.0865 25
-766 2 33.6114 26.7605 31.1276 25
-767 2 33.4134 27.0353 31.1309 25
-768 2 33.0884 26.9318 31.1366 25
-769 2 33.0884 26.5892 31.1366 25
-770 2 33.4134 26.4857 31.1309 25
-771 2 33.6114 26.7605 29.8631 25
-772 2 33.4134 27.0353 29.8597 25
-773 2 33.0884 26.9318 29.8541 25
-774 2 33.0884 26.5892 29.8541 25
-775 2 33.4134 26.4857 29.8597 25
-776 1 32.6296 27.0741 31.7189 26
-777 2 31.9696 27.0741 31.952 26
-778 2 32.4414 26.4401 31.9481 26
-779 2 33.1723 26.6925 31.9421 26
-780 2 33.1723 27.4558 31.9421 26
-781 2 32.4414 27.7082 31.9481 26
-782 2 31.9696 27.0741 31.4857 26
-783 2 32.4414 26.4401 31.4897 26
-784 2 33.1723 26.6925 31.4956 26
-785 2 33.1723 27.4558 31.4956 26
-786 2 32.4414 27.7082 31.4897 26
-787 2 33.2014 27.0741 32.1226 26
-788 2 32.8195 27.6097 32.1277 26
-789 2 32.1807 27.4121 32.1363 26
-790 2 32.1807 26.7362 32.1363 26
-791 2 32.8195 26.5386 32.1277 26
-792 2 33.2014 27.0741 31.3151 26
-793 2 32.8195 27.6097 31.3101 26
-794 2 32.1807 27.4121 31.3014 26
-795 2 32.1807 26.7362 31.3014 26
-796 2 32.8195 26.5386 31.3101 26
-797 2 32.9301 27.0741 32.3511 26
-798 2 32.7321 27.3489 32.3545 26
-799 2 32.4071 27.2454 32.3601 26
-800 2 32.4071 26.9028 32.3601 26
-801 2 32.7321 26.7994 32.3545 26
-802 2 32.9301 27.0741 31.0867 26
-803 2 32.7321 27.3489 31.0833 26
-804 2 32.4071 27.2454 31.0777 26
-805 2 32.4071 26.9028 31.0777 26
-806 2 32.7321 26.7994 31.0833 26
-807 1 31.7049 27.9673 32.3567 27
-808 2 31.0449 27.9673 32.5899 27
-809 2 31.5167 27.3332 32.5859 27
-810 2 32.2476 27.5856 32.5799 27
-811 2 32.2476 28.3489 32.5799 27
-812 2 31.5167 28.6014 32.5859 27
-813 2 31.0449 27.9673 32.1235 27
-814 2 31.5167 27.3332 32.1275 27
-815 2 32.2476 27.5856 32.1335 27
-816 2 32.2476 28.3489 32.1335 27
-817 2 31.5167 28.6014 32.1275 27
-818 2 32.2767 27.9673 32.7604 27
-819 2 31.8948 28.5028 32.7655 27
-820 2 31.256 28.3053 32.7742 27
-821 2 31.256 27.6293 32.7742 27
-822 2 31.8948 27.4317 32.7655 27
-823 2 32.2767 27.9673 31.953 27
-824 2 31.8948 28.5028 31.9479 27
-825 2 31.256 28.3053 31.9393 27
-826 2 31.256 27.6293 31.9393 27
-827 2 31.8948 27.4317 31.9479 27
-828 2 32.0054 27.9673 32.9889 27
-829 2 31.8074 28.2421 32.9923 27
-830 2 31.4824 28.1386 32.9979 27
-831 2 31.4824 27.796 32.9979 27
-832 2 31.8074 27.6925 32.9923 27
-833 2 32.0054 27.9673 31.7245 27
-834 2 31.8074 28.2421 31.7211 27
-835 2 31.4824 28.1386 31.7155 27
-836 2 31.4824 27.796 31.7155 27
-837 2 31.8074 27.6925 31.7211 27
-838 1 30.3399 27.7351 32.7342 28
-839 2 29.6799 27.7351 32.9674 28
-840 2 30.1517 27.101 32.9634 28
-841 2 30.8826 27.3535 32.9574 28
-842 2 30.8826 28.1168 32.9574 28
-843 2 30.1517 28.3692 32.9634 28
-844 2 29.6799 27.7351 32.5011 28
-845 2 30.1517 27.101 32.505 28
-846 2 30.8826 27.3535 32.511 28
-847 2 30.8826 28.1168 32.511 28
-848 2 30.1517 28.3692 32.505 28
-849 2 30.9117 27.7351 33.138 28
-850 2 30.5298 28.2706 33.143 28
-851 2 29.891 28.0731 33.1517 28
-852 2 29.891 27.3971 33.1517 28
-853 2 30.5298 27.1996 33.143 28
-854 2 30.9117 27.7351 32.3305 28
-855 2 30.5298 28.2706 32.3254 28
-856 2 29.891 28.0731 32.3168 28
-857 2 29.891 27.3971 32.3168 28
-858 2 30.5298 27.1996 32.3254 28
-859 2 30.6404 27.7351 33.3664 28
-860 2 30.4424 28.0099 33.3698 28
-861 2 30.1174 27.9064 33.3754 28
-862 2 30.1174 27.5638 33.3754 28
-863 2 30.4424 27.4603 33.3698 28
-864 2 30.6404 27.7351 32.102 28
-865 2 30.4424 28.0099 32.0986 28
-866 2 30.1174 27.9064 32.093 28
-867 2 30.1174 27.5638 32.093 28
-868 2 30.4424 27.4603 32.0986 28
-869 1 29.8305 28.063 34.0352 29
-870 2 29.1705 28.063 34.2684 29
-871 2 29.6424 27.429 34.2644 29
-872 2 30.3732 27.6814 34.2584 29
-873 2 30.3732 28.4447 34.2584 29
-874 2 29.6424 28.6971 34.2644 29
-875 2 29.1705 28.063 33.8021 29
-876 2 29.6424 27.429 33.806 29
-877 2 30.3732 27.6814 33.812 29
-878 2 30.3732 28.4447 33.812 29
-879 2 29.6424 28.6971 33.806 29
-880 2 30.4024 28.063 34.439 29
-881 2 30.0205 28.5986 34.444 29
-882 2 29.3816 28.401 34.4527 29
-883 2 29.3816 27.7251 34.4527 29
-884 2 30.0205 27.5275 34.444 29
-885 2 30.4024 28.063 33.6315 29
-886 2 30.0205 28.5986 33.6264 29
-887 2 29.3816 28.401 33.6178 29
-888 2 29.3816 27.7251 33.6178 29
-889 2 30.0205 27.5275 33.6264 29
-890 2 30.1311 28.063 34.6674 29
-891 2 29.933 28.3378 34.6708 29
-892 2 29.6081 28.2344 34.6764 29
-893 2 29.6081 27.8917 34.6764 29
-894 2 29.933 27.7883 34.6708 29
-895 2 30.1311 28.063 33.403 29
-896 2 29.933 28.3378 33.3996 29
-897 2 29.6081 28.2344 33.394 29
-898 2 29.6081 27.8917 33.394 29
-899 2 29.933 27.7883 33.3996 29
-900 1 30.2349 27.8319 35.3927 30
-901 2 29.5749 27.8319 35.6258 30
-902 2 30.0468 27.1978 35.6219 30
-903 2 30.7776 27.4503 35.6159 30
-904 2 30.7776 28.2136 35.6159 30
-905 2 30.0468 28.466 35.6219 30
-906 2 29.5749 27.8319 35.1595 30
-907 2 30.0468 27.1978 35.1634 30
-908 2 30.7776 27.4503 35.1694 30
-909 2 30.7776 28.2136 35.1694 30
-910 2 30.0468 28.466 35.1634 30
-911 2 30.8068 27.8319 35.7964 30
-912 2 30.4249 28.3675 35.8015 30
-913 2 29.786 28.1699 35.8101 30
-914 2 29.786 27.4939 35.8101 30
-915 2 30.4249 27.2964 35.8015 30
-916 2 30.8068 27.8319 34.9889 30
-917 2 30.4249 28.3675 34.9839 30
-918 2 29.786 28.1699 34.9752 30
-919 2 29.786 27.4939 34.9752 30
-920 2 30.4249 27.2964 34.9839 30
-921 2 30.5354 27.8319 36.0249 30
-922 2 30.3374 28.1067 36.0283 30
-923 2 30.0125 28.0032 36.0339 30
-924 2 30.0125 27.6606 36.0339 30
-925 2 30.3374 27.5571 36.0283 30
-926 2 30.5354 27.8319 34.7604 30
-927 2 30.3374 28.1067 34.7571 30
-928 2 30.0125 28.0032 34.7514 30
-929 2 30.0125 27.6606 34.7514 30
-930 2 30.3374 27.5571 34.7571 30
-931 1 30.9967 26.7242 34.8903 31
-932 2 30.3366 26.7242 35.1234 31
-933 2 30.8085 26.0901 35.1195 31
-934 2 31.5393 26.3426 35.1135 31
-935 2 31.5393 27.1059 35.1135 31
-936 2 30.8085 27.3583 35.1195 31
-937 2 30.3366 26.7242 34.6571 31
-938 2 30.8085 26.0901 34.6611 31
-939 2 31.5393 26.3426 34.6671 31
-940 2 31.5393 27.1059 34.6671 31
-941 2 30.8085 27.3583 34.6611 31
-942 2 31.5685 26.7242 35.294 31
-943 2 31.1866 27.2598 35.2991 31
-944 2 30.5478 27.0622 35.3077 31
-945 2 30.5478 26.3862 35.3077 31
-946 2 31.1866 26.1887 35.2991 31
-947 2 31.5685 26.7242 34.4866 31
-948 2 31.1866 27.2598 34.4815 31
-949 2 30.5478 27.0622 34.4728 31
-950 2 30.5478 26.3862 34.4728 31
-951 2 31.1866 26.1887 34.4815 31
-952 2 31.2972 26.7242 35.5225 31
-953 2 31.0991 26.999 35.5259 31
-954 2 30.7742 26.8955 35.5315 31
-955 2 30.7742 26.5529 35.5315 31
-956 2 31.0991 26.4494 35.5259 31
-957 2 31.2972 26.7242 34.2581 31
-958 2 31.0991 26.999 34.2547 31
-959 2 30.7742 26.8955 34.2491 31
-960 2 30.7742 26.5529 34.2491 31
-961 2 31.0991 26.4494 34.2547 31
-962 1 29.9072 26.1623 34.144 32
-963 2 29.2472 26.1623 34.3772 32
-964 2 29.719 25.5283 34.3732 32
-965 2 30.4499 25.7807 34.3672 32
-966 2 30.4499 26.544 34.3672 32
-967 2 29.719 26.7964 34.3732 32
-968 2 29.2472 26.1623 33.9109 32
-969 2 29.719 25.5282 33.9148 32
-970 2 30.4499 25.7807 33.9208 32
-971 2 30.4499 26.544 33.9208 32
-972 2 29.719 26.7964 33.9148 32
-973 2 30.479 26.1623 34.5478 32
-974 2 30.0971 26.6979 34.5528 32
-975 2 29.4583 26.5003 34.5615 32
-976 2 29.4583 25.8244 34.5615 32
-977 2 30.0971 25.6268 34.5528 32
-978 2 30.479 26.1623 33.7403 32
-979 2 30.0971 26.6979 33.7352 32
-980 2 29.4583 26.5003 33.7266 32
-981 2 29.4583 25.8244 33.7266 32
-982 2 30.0971 25.6268 33.7352 32
-983 2 30.2077 26.1623 34.7762 32
-984 2 30.0097 26.4371 34.7796 32
-985 2 29.6847 26.3336 34.7852 32
-986 2 29.6847 25.991 34.7852 32
-987 2 30.0097 25.8876 34.7796 32
-988 2 30.2077 26.1623 33.5118 32
-989 2 30.0097 26.4371 33.5084 32
-990 2 29.6847 26.3336 33.5028 32
-991 2 29.6847 25.991 33.5028 32
-992 2 30.0097 25.8875 33.5084 32
-
-Bonds
-
-1 1 1 32
-2 1 32 63
-3 1 63 94
-4 1 94 125
-5 1 125 156
-6 1 156 187
-7 1 187 218
-8 1 218 249
-9 1 249 280
-10 1 280 311
-11 1 311 342
-12 1 342 373
-13 1 373 404
-14 1 404 435
-15 1 435 466
-16 1 466 497
-17 1 497 528
-18 1 528 559
-19 1 559 590
-20 1 590 621
-21 1 621 652
-22 1 652 683
-23 1 683 714
-24 1 714 745
-25 1 745 776
-26 1 776 807
-27 1 807 838
-28 1 838 869
-29 1 869 900
-30 1 900 931
-31 1 931 962
+Position data for a 32-bead polymer consisting of 31-vertex extended spheres
+
+992 atoms
+31 bonds
+
+2 atom types
+1 bond types
+
+0 40 xlo xhi
+0 40 ylo yhi
+0 40 zlo zhi
+
+Atoms
+
+1 1 21.0439 24.2646 23.1337 1
+2 2 20.3839 24.2646 23.3669 1
+3 2 20.8557 23.6306 23.3629 1
+4 2 21.5866 23.883 23.3569 1
+5 2 21.5866 24.6463 23.3569 1
+6 2 20.8558 24.8987 23.3629 1
+7 2 20.3839 24.2646 22.9005 1
+8 2 20.8558 23.6306 22.9045 1
+9 2 21.5866 23.883 22.9105 1
+10 2 21.5866 24.6463 22.9105 1
+11 2 20.8557 24.8987 22.9045 1
+12 2 21.6158 24.2646 23.5374 1
+13 2 21.2339 24.8002 23.5425 1
+14 2 20.595 24.6026 23.5511 1
+15 2 20.595 23.9267 23.5511 1
+16 2 21.2339 23.7291 23.5425 1
+17 2 21.6158 24.2646 22.73 1
+18 2 21.2339 24.8002 22.7249 1
+19 2 20.595 24.6026 22.7163 1
+20 2 20.595 23.9267 22.7163 1
+21 2 21.2339 23.7291 22.7249 1
+22 2 21.3444 24.2646 23.7659 1
+23 2 21.1464 24.5394 23.7693 1
+24 2 20.8215 24.436 23.7749 1
+25 2 20.8215 24.0933 23.7749 1
+26 2 21.1464 23.9899 23.7693 1
+27 2 21.3444 24.2646 22.5015 1
+28 2 21.1464 24.5394 22.4981 1
+29 2 20.8214 24.436 22.4925 1
+30 2 20.8214 24.0933 22.4925 1
+31 2 21.1464 23.9899 22.4981 1
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+949 2 30.5478 27.0622 34.4728 31
+950 2 30.5478 26.3862 34.4728 31
+951 2 31.1866 26.1887 34.4815 31
+952 2 31.2972 26.7242 35.5225 31
+953 2 31.0991 26.999 35.5259 31
+954 2 30.7742 26.8955 35.5315 31
+955 2 30.7742 26.5529 35.5315 31
+956 2 31.0991 26.4494 35.5259 31
+957 2 31.2972 26.7242 34.2581 31
+958 2 31.0991 26.999 34.2547 31
+959 2 30.7742 26.8955 34.2491 31
+960 2 30.7742 26.5529 34.2491 31
+961 2 31.0991 26.4494 34.2547 31
+962 1 29.9072 26.1623 34.144 32
+963 2 29.2472 26.1623 34.3772 32
+964 2 29.719 25.5283 34.3732 32
+965 2 30.4499 25.7807 34.3672 32
+966 2 30.4499 26.544 34.3672 32
+967 2 29.719 26.7964 34.3732 32
+968 2 29.2472 26.1623 33.9109 32
+969 2 29.719 25.5282 33.9148 32
+970 2 30.4499 25.7807 33.9208 32
+971 2 30.4499 26.544 33.9208 32
+972 2 29.719 26.7964 33.9148 32
+973 2 30.479 26.1623 34.5478 32
+974 2 30.0971 26.6979 34.5528 32
+975 2 29.4583 26.5003 34.5615 32
+976 2 29.4583 25.8244 34.5615 32
+977 2 30.0971 25.6268 34.5528 32
+978 2 30.479 26.1623 33.7403 32
+979 2 30.0971 26.6979 33.7352 32
+980 2 29.4583 26.5003 33.7266 32
+981 2 29.4583 25.8244 33.7266 32
+982 2 30.0971 25.6268 33.7352 32
+983 2 30.2077 26.1623 34.7762 32
+984 2 30.0097 26.4371 34.7796 32
+985 2 29.6847 26.3336 34.7852 32
+986 2 29.6847 25.991 34.7852 32
+987 2 30.0097 25.8876 34.7796 32
+988 2 30.2077 26.1623 33.5118 32
+989 2 30.0097 26.4371 33.5084 32
+990 2 29.6847 26.3336 33.5028 32
+991 2 29.6847 25.991 33.5028 32
+992 2 30.0097 25.8875 33.5084 32
+
+Bonds
+
+1 1 1 32
+2 1 32 63
+3 1 63 94
+4 1 94 125
+5 1 125 156
+6 1 156 187
+7 1 187 218
+8 1 218 249
+9 1 249 280
+10 1 280 311
+11 1 311 342
+12 1 342 373
+13 1 373 404
+14 1 404 435
+15 1 435 466
+16 1 466 497
+17 1 497 528
+18 1 528 559
+19 1 559 590
+20 1 590 621
+21 1 621 652
+22 1 652 683
+23 1 683 714
+24 1 714 745
+25 1 745 776
+26 1 776 807
+27 1 807 838
+28 1 838 869
+29 1 869 900
+30 1 900 931
+31 1 931 962
diff --git a/examples/USER/lb/polymer/in.polymer_default_gamma b/examples/USER/lb/polymer/in.polymer_default_gamma
index cd48a8ccf1..954e5a6923 100755
--- a/examples/USER/lb/polymer/in.polymer_default_gamma
+++ b/examples/USER/lb/polymer/in.polymer_default_gamma
@@ -1,107 +1,107 @@
-#===========================================================================#
-# polymer test #
-# #
-# Run consists of a lone 32-bead coarse-grained polymer #
-# undergoing Brownian motion in thermal lattice-Boltzmann fluid. #
-# #
-# Here, gamma (used in the calculation of the monomer-fluid interaction #
-# force) is set by the user (gamma = 0.03 for this simulation...this #
-# value has been calibrated a priori through simulations of the drag #
-# force acting on a single particle of the same radius). #
-# Sample output from this run can be found in the file: #
-# 'dump.polymer.lammpstrj' #
-# and viewed using, e.g., the VMD software. #
-# #
-#===========================================================================#
-
-units nano
-dimension 3
-boundary p p p
-atom_style hybrid molecular
-special_bonds fene
-read_data data.polymer
-
-#----------------------------------------------------------------------------
-# Need a neighbor bin size smaller than the lattice-Boltzmann grid spacing
-# to ensure that the particles belonging to a given processor remain inside
-# that processors lattice-Boltzmann grid.
-#----------------------------------------------------------------------------
-neighbor 0.5 bin
-neigh_modify delay 0 every 1 check yes
-neigh_modify exclude type 2 2
-neigh_modify exclude type 2 1
-
-#----------------------------------------------------------------------------
-# Implement a hard-sphere interaction between the particles at the center of
-# each monomer (use a truncated and shifted Lennard-Jones potential).
-#----------------------------------------------------------------------------
-bond_style fene
-bond_coeff 1 60.0 2.25 4.14195 1.5
-pair_style lj/cut 1.68369
-pair_coeff 1 1 4.14195 1.5 1.68369
-pair_coeff 1 2 4.14195 1.5 1.68369
-pair_coeff 2 2 0 1.0
-
-mass * 0.000000771064
-timestep 0.00003
-
-#----------------------------------------------------------------------------
-# ForceAtoms are the particles at the center of each monomer which
-# do not interact with the fluid, but are used to implement the hard-sphere
-# interactions.
-# FluidAtoms are the particles representing the surface of the monomer
-# which do interact with the fluid. Monomer surface is shell of radius 0.7
-#----------------------------------------------------------------------------
-group ForceAtoms type 1
-group FluidAtoms type 2
-
-#---------------------------------------------------------------------------
-# Create a lattice-Boltzmann fluid covering the simulation domain.
-# This fluid feels a force due to the particles specified through FluidAtoms
-# (however, this fix does not explicitly apply a force back on to these
-# particles. This is accomplished through the use of the lb/viscous
-# fix).
-# Uses the standard LB integration scheme, fluid viscosity = 0.023333333,
-# fluid density= 0.0000166368, lattice spacing dx=1.0, and mass unit,
-# dm=0.0000166368.
-# Use the default method to calculate the interaction force between the
-# particles and the fluid. This calculation requires the surface area
-# of the composite object represented by each particle node. By default
-# this area is assumed equal to dx*dx; however, since this is not the case
-# here, it is input through the setArea keyword (i.e. particles of type 2
-# correspond to a surface area of 0.2025=4 Pi R^2/N ).
-# Use the trilinear interpolation stencil to distribute the force from
-# a given particle onto the fluid mesh (results in a smaller hydrodynamic
-# radius than if the Peskin stencil is used).
-# Use a thermal lattice-Boltzmann fluid (temperature 300K, random number
-# seed=15003). This enables the particles to undergo Brownian motion in
-# the fluid.
-#----------------------------------------------------------------------------
-fix 1 FluidAtoms lb/fluid 3 1 0.023333333 0.0000166368 setArea 2 0.20525 dx 1.0 dm 0.0000166368 noise 300.0 15003
-
-#----------------------------------------------------------------------------
-# Apply the force from the fluid to the particles, and integrate their
-# motion, constraining them to move and rotate together as a single rigid
-# spherical object.
-# Since both the ForceAtoms (central atoms), and the FluidAtoms (spherical
-# shell) should move and rotate together, this fix is applied to all of
-# the atoms in the system. However, since the central atoms should not
-# feel a force due to the fluid, they are excluded from the fluid force
-# calculation.
-#----------------------------------------------------------------------------
-fix 2 FluidAtoms lb/viscous
-fix 3 all rigid molecule
-
-#----------------------------------------------------------------------------
-# To ensure that numerical errors do not lead to a buildup of momentum in the
-# system, the momentum_lb fix is used every 10000 timesteps to zero out the
-# total (particle plus fluid) momentum in the system.
-#----------------------------------------------------------------------------
-fix 4 all lb/momentum 10000 linear 1 1 1
-
-#----------------------------------------------------------------------------
-# Write position and velocity coordinates into a file every 2000 time steps.
-#----------------------------------------------------------------------------
-
-dump 1 ForceAtoms custom 2000 dump.polymer_default_gamma.lammpstrj id x y z vx vy vz
-run 2000001
+#===========================================================================#
+# polymer test #
+# #
+# Run consists of a lone 32-bead coarse-grained polymer #
+# undergoing Brownian motion in thermal lattice-Boltzmann fluid. #
+# #
+# Here, gamma (used in the calculation of the monomer-fluid interaction #
+# force) is set by the user (gamma = 0.03 for this simulation...this #
+# value has been calibrated a priori through simulations of the drag #
+# force acting on a single particle of the same radius). #
+# Sample output from this run can be found in the file: #
+# 'dump.polymer.lammpstrj' #
+# and viewed using, e.g., the VMD software. #
+# #
+#===========================================================================#
+
+units nano
+dimension 3
+boundary p p p
+atom_style hybrid molecular
+special_bonds fene
+read_data data.polymer
+
+#----------------------------------------------------------------------------
+# Need a neighbor bin size smaller than the lattice-Boltzmann grid spacing
+# to ensure that the particles belonging to a given processor remain inside
+# that processors lattice-Boltzmann grid.
+#----------------------------------------------------------------------------
+neighbor 0.5 bin
+neigh_modify delay 0 every 1 check yes
+neigh_modify exclude type 2 2
+neigh_modify exclude type 2 1
+
+#----------------------------------------------------------------------------
+# Implement a hard-sphere interaction between the particles at the center of
+# each monomer (use a truncated and shifted Lennard-Jones potential).
+#----------------------------------------------------------------------------
+bond_style fene
+bond_coeff 1 60.0 2.25 4.14195 1.5
+pair_style lj/cut 1.68369
+pair_coeff 1 1 4.14195 1.5 1.68369
+pair_coeff 1 2 4.14195 1.5 1.68369
+pair_coeff 2 2 0 1.0
+
+mass * 0.000000771064
+timestep 0.00003
+
+#----------------------------------------------------------------------------
+# ForceAtoms are the particles at the center of each monomer which
+# do not interact with the fluid, but are used to implement the hard-sphere
+# interactions.
+# FluidAtoms are the particles representing the surface of the monomer
+# which do interact with the fluid. Monomer surface is shell of radius 0.7
+#----------------------------------------------------------------------------
+group ForceAtoms type 1
+group FluidAtoms type 2
+
+#---------------------------------------------------------------------------
+# Create a lattice-Boltzmann fluid covering the simulation domain.
+# This fluid feels a force due to the particles specified through FluidAtoms
+# (however, this fix does not explicitly apply a force back on to these
+# particles. This is accomplished through the use of the lb/viscous
+# fix).
+# Uses the standard LB integration scheme, fluid viscosity = 0.023333333,
+# fluid density= 0.0000166368, lattice spacing dx=1.0, and mass unit,
+# dm=0.0000166368.
+# Use the default method to calculate the interaction force between the
+# particles and the fluid. This calculation requires the surface area
+# of the composite object represented by each particle node. By default
+# this area is assumed equal to dx*dx; however, since this is not the case
+# here, it is input through the setArea keyword (i.e. particles of type 2
+# correspond to a surface area of 0.2025=4 Pi R^2/N ).
+# Use the trilinear interpolation stencil to distribute the force from
+# a given particle onto the fluid mesh (results in a smaller hydrodynamic
+# radius than if the Peskin stencil is used).
+# Use a thermal lattice-Boltzmann fluid (temperature 300K, random number
+# seed=15003). This enables the particles to undergo Brownian motion in
+# the fluid.
+#----------------------------------------------------------------------------
+fix 1 FluidAtoms lb/fluid 3 1 0.023333333 0.0000166368 setArea 2 0.20525 dx 1.0 dm 0.0000166368 noise 300.0 15003
+
+#----------------------------------------------------------------------------
+# Apply the force from the fluid to the particles, and integrate their
+# motion, constraining them to move and rotate together as a single rigid
+# spherical object.
+# Since both the ForceAtoms (central atoms), and the FluidAtoms (spherical
+# shell) should move and rotate together, this fix is applied to all of
+# the atoms in the system. However, since the central atoms should not
+# feel a force due to the fluid, they are excluded from the fluid force
+# calculation.
+#----------------------------------------------------------------------------
+fix 2 FluidAtoms lb/viscous
+fix 3 all rigid molecule
+
+#----------------------------------------------------------------------------
+# To ensure that numerical errors do not lead to a buildup of momentum in the
+# system, the momentum_lb fix is used every 10000 timesteps to zero out the
+# total (particle plus fluid) momentum in the system.
+#----------------------------------------------------------------------------
+fix 4 all lb/momentum 10000 linear 1 1 1
+
+#----------------------------------------------------------------------------
+# Write position and velocity coordinates into a file every 2000 time steps.
+#----------------------------------------------------------------------------
+
+dump 1 ForceAtoms custom 2000 dump.polymer_default_gamma.lammpstrj id x y z vx vy vz
+run 2000001
diff --git a/examples/USER/lb/polymer/in.polymer_setgamma b/examples/USER/lb/polymer/in.polymer_setgamma
index fd5aeaa83e..75b8d67ada 100755
--- a/examples/USER/lb/polymer/in.polymer_setgamma
+++ b/examples/USER/lb/polymer/in.polymer_setgamma
@@ -1,105 +1,105 @@
-#===========================================================================#
-# polymer test #
-# #
-# Run consists of a lone 32-bead coarse-grained polymer #
-# undergoing Brownian motion in thermal lattice-Boltzmann fluid. #
-# #
-# Here, gamma (used in the calculation of the monomer-fluid interaction #
-# force) is set by the user (gamma = 0.03 for this simulation...this #
-# value has been calibrated a priori through simulations of the drag #
-# force acting on a single particle of the same radius). #
-# Sample output from this run can be found in the file: #
-# 'dump.polymer.lammpstrj' #
-# and viewed using, e.g., the VMD software. #
-# #
-# Santtu Ollila #
-# santtu.ollila@aalto.fi #
-# Aalto University #
-# August 14, 2013 #
-#===========================================================================#
-
-units nano
-dimension 3
-boundary p p p
-atom_style hybrid molecular
-special_bonds fene
-read_data data.polymer
-
-#----------------------------------------------------------------------------
-# Need a neighbor bin size smaller than the lattice-Boltzmann grid spacing
-# to ensure that the particles belonging to a given processor remain inside
-# that processors lattice-Boltzmann grid.
-#----------------------------------------------------------------------------
-neighbor 0.5 bin
-neigh_modify delay 0 every 1 check yes
-neigh_modify exclude type 2 2
-neigh_modify exclude type 2 1
-
-#----------------------------------------------------------------------------
-# Implement a hard-sphere interaction between the particles at the center of
-# each monomer (use a truncated and shifted Lennard-Jones potential).
-#----------------------------------------------------------------------------
-bond_style fene
-bond_coeff 1 60.0 2.25 4.14195 1.5
-pair_style lj/cut 1.68369
-pair_coeff 1 1 4.14195 1.5 1.68369
-pair_coeff 1 2 4.14195 1.5 1.68369
-pair_coeff 2 2 0 1.0
-
-mass * 0.000000771064
-timestep 0.00003
-
-#----------------------------------------------------------------------------
-# ForceAtoms are the particles at the center of each monomer which
-# do not interact with the fluid, but are used to implement the hard-sphere
-# interactions.
-# FluidAtoms are the particles representing the surface of the monomer
-# which do interact with the fluid.
-#----------------------------------------------------------------------------
-group ForceAtoms type 1
-group FluidAtoms type 2
-
-#---------------------------------------------------------------------------
-# Create a lattice-Boltzmann fluid covering the simulation domain.
-# This fluid feels a force due to the particles specified through FluidAtoms
-# (however, this fix does not explicitly apply a force back on to these
-# particles. This is accomplished through the use of the rigid_pc_sphere
-# fix).
-# Use the LB integration scheme of Ollila et. al. (for stability reasons,
-# this integration scheme should be used when a large user set value for
-# gamma is specified), a fluid viscosity = 0.023333333,
-# fluid density= 0.0000166368,
-# value for gamma=0.03, lattice spacing dx=1.0, and mass unit, dm=0.0000166368.
-# Use a thermal lattice-Boltzmann fluid (temperature 300K, random number
-# seed=15003). This enables the particles to undergo Brownian motion in
-# the fluid.
-#----------------------------------------------------------------------------
-fix 1 FluidAtoms lb/fluid 5 1 0.023333333 0.0000166368 setGamma 0.03 dx 1.0 dm 0.0000166368 noise 300.0 15003
-
-#----------------------------------------------------------------------------
-# Apply the force from the fluid to the particles, and integrate their
-# motion, constraining them to move and rotate together as a single rigid
-# spherical object.
-# Since both the ForceAtoms (central atoms), and the FluidAtoms (spherical
-# shell) should move and rotate together, this fix is applied to all of
-# the atoms in the system. However, since the central atoms should not
-# feel a force due to the fluid, they are excluded from the force
-# calculation through the use of the 'innerNodes' keyword.
-# NOTE: This fix should only be used when the user specifies a value for
-# gamma (through the setGamma keyword) in the lb_fluid fix.
-#----------------------------------------------------------------------------
-fix 2 all lb/rigid/pc/sphere molecule innerNodes ForceAtoms
-
-#----------------------------------------------------------------------------
-# To ensure that numerical errors do not lead to a buildup of momentum in the
-# system, the momentum_lb fix is used every 10000 timesteps to zero out the
-# total (particle plus fluid) momentum in the system.
-#----------------------------------------------------------------------------
-fix 3 all lb/momentum 10000 linear 1 1 1
-
-#----------------------------------------------------------------------------
-# Write position and velocity coordinates into a file every 2000 time steps.
-#----------------------------------------------------------------------------
-
-dump 1 ForceAtoms custom 2000 dump.polymer_setgamma.lammpstrj id x y z vx vy vz
-run 2000001
+#===========================================================================#
+# polymer test #
+# #
+# Run consists of a lone 32-bead coarse-grained polymer #
+# undergoing Brownian motion in thermal lattice-Boltzmann fluid. #
+# #
+# Here, gamma (used in the calculation of the monomer-fluid interaction #
+# force) is set by the user (gamma = 0.03 for this simulation...this #
+# value has been calibrated a priori through simulations of the drag #
+# force acting on a single particle of the same radius). #
+# Sample output from this run can be found in the file: #
+# 'dump.polymer.lammpstrj' #
+# and viewed using, e.g., the VMD software. #
+# #
+# Santtu Ollila #
+# santtu.ollila@aalto.fi #
+# Aalto University #
+# August 14, 2013 #
+#===========================================================================#
+
+units nano
+dimension 3
+boundary p p p
+atom_style hybrid molecular
+special_bonds fene
+read_data data.polymer
+
+#----------------------------------------------------------------------------
+# Need a neighbor bin size smaller than the lattice-Boltzmann grid spacing
+# to ensure that the particles belonging to a given processor remain inside
+# that processors lattice-Boltzmann grid.
+#----------------------------------------------------------------------------
+neighbor 0.5 bin
+neigh_modify delay 0 every 1 check yes
+neigh_modify exclude type 2 2
+neigh_modify exclude type 2 1
+
+#----------------------------------------------------------------------------
+# Implement a hard-sphere interaction between the particles at the center of
+# each monomer (use a truncated and shifted Lennard-Jones potential).
+#----------------------------------------------------------------------------
+bond_style fene
+bond_coeff 1 60.0 2.25 4.14195 1.5
+pair_style lj/cut 1.68369
+pair_coeff 1 1 4.14195 1.5 1.68369
+pair_coeff 1 2 4.14195 1.5 1.68369
+pair_coeff 2 2 0 1.0
+
+mass * 0.000000771064
+timestep 0.00003
+
+#----------------------------------------------------------------------------
+# ForceAtoms are the particles at the center of each monomer which
+# do not interact with the fluid, but are used to implement the hard-sphere
+# interactions.
+# FluidAtoms are the particles representing the surface of the monomer
+# which do interact with the fluid.
+#----------------------------------------------------------------------------
+group ForceAtoms type 1
+group FluidAtoms type 2
+
+#---------------------------------------------------------------------------
+# Create a lattice-Boltzmann fluid covering the simulation domain.
+# This fluid feels a force due to the particles specified through FluidAtoms
+# (however, this fix does not explicitly apply a force back on to these
+# particles. This is accomplished through the use of the rigid_pc_sphere
+# fix).
+# Use the LB integration scheme of Ollila et. al. (for stability reasons,
+# this integration scheme should be used when a large user set value for
+# gamma is specified), a fluid viscosity = 0.023333333,
+# fluid density= 0.0000166368,
+# value for gamma=0.03, lattice spacing dx=1.0, and mass unit, dm=0.0000166368.
+# Use a thermal lattice-Boltzmann fluid (temperature 300K, random number
+# seed=15003). This enables the particles to undergo Brownian motion in
+# the fluid.
+#----------------------------------------------------------------------------
+fix 1 FluidAtoms lb/fluid 5 1 0.023333333 0.0000166368 setGamma 0.03 dx 1.0 dm 0.0000166368 noise 300.0 15003
+
+#----------------------------------------------------------------------------
+# Apply the force from the fluid to the particles, and integrate their
+# motion, constraining them to move and rotate together as a single rigid
+# spherical object.
+# Since both the ForceAtoms (central atoms), and the FluidAtoms (spherical
+# shell) should move and rotate together, this fix is applied to all of
+# the atoms in the system. However, since the central atoms should not
+# feel a force due to the fluid, they are excluded from the force
+# calculation through the use of the 'innerNodes' keyword.
+# NOTE: This fix should only be used when the user specifies a value for
+# gamma (through the setGamma keyword) in the lb_fluid fix.
+#----------------------------------------------------------------------------
+fix 2 all lb/rigid/pc/sphere molecule innerNodes ForceAtoms
+
+#----------------------------------------------------------------------------
+# To ensure that numerical errors do not lead to a buildup of momentum in the
+# system, the momentum_lb fix is used every 10000 timesteps to zero out the
+# total (particle plus fluid) momentum in the system.
+#----------------------------------------------------------------------------
+fix 3 all lb/momentum 10000 linear 1 1 1
+
+#----------------------------------------------------------------------------
+# Write position and velocity coordinates into a file every 2000 time steps.
+#----------------------------------------------------------------------------
+
+dump 1 ForceAtoms custom 2000 dump.polymer_setgamma.lammpstrj id x y z vx vy vz
+run 2000001
From dd76ac5010aeb43900f3dd9db9a4a75acf091f59 Mon Sep 17 00:00:00 2001
From: Richard Berger
Date: Sun, 5 Mar 2017 20:40:45 -0500
Subject: [PATCH 07/15] Fix typos in tools folder
---
tools/i-pi/ipi/engine/thermostats.py | 2 +-
.../src/moltemplate_force_fields/amber/amberparm2lt.sh | 2 +-
tools/moltemplate/src/moltemplate_force_fields/gaff.lt | 2 +-
tools/moltemplate/src/ttree.py | 2 +-
tools/msi2lmp/frc_files/pcff.frc | 2 +-
5 files changed, 5 insertions(+), 5 deletions(-)
diff --git a/tools/i-pi/ipi/engine/thermostats.py b/tools/i-pi/ipi/engine/thermostats.py
index 5375bb917e..1fb048ec27 100644
--- a/tools/i-pi/ipi/engine/thermostats.py
+++ b/tools/i-pi/ipi/engine/thermostats.py
@@ -691,7 +691,7 @@ class ThermoNMGLE(Thermostat):
"""
def get_C(self):
- """Calculates C from temp (if C is not set explicitely)."""
+ """Calculates C from temp (if C is not set explicitly)."""
rv = np.ndarray((self.nb, self.ns+1, self.ns+1), float)
for b in range(0,self.nb):
diff --git a/tools/moltemplate/src/moltemplate_force_fields/amber/amberparm2lt.sh b/tools/moltemplate/src/moltemplate_force_fields/amber/amberparm2lt.sh
index 7ef489d5f0..92e7e2c42a 100755
--- a/tools/moltemplate/src/moltemplate_force_fields/amber/amberparm2lt.sh
+++ b/tools/moltemplate/src/moltemplate_force_fields/amber/amberparm2lt.sh
@@ -159,7 +159,7 @@ echo " # ----------------------------------------------------------------------
#echo " # This file was automatically generated by \"common/amber/amberparm2lt.sh\""
echo " # The basic atom nomenclature and conventions are explained here:"
echo " # http://ambermd.org/antechamber/gaff.pdf"
-echo " # For reference, the original gaff.dat file and format documenation are here:"
+echo " # For reference, the original gaff.dat file and format documentation are here:"
echo " # http://ambermd.org/AmberTools-get.html"
echo " # http://ambermd.org/formats.html#parm.dat"
echo " # ----------------------------------------------------------------------"
diff --git a/tools/moltemplate/src/moltemplate_force_fields/gaff.lt b/tools/moltemplate/src/moltemplate_force_fields/gaff.lt
index 82063a721b..683dbf4ee4 100644
--- a/tools/moltemplate/src/moltemplate_force_fields/gaff.lt
+++ b/tools/moltemplate/src/moltemplate_force_fields/gaff.lt
@@ -44,7 +44,7 @@ GAFF {
# ----------------------------------------------------------------------
# The basic atom nomenclature and conventions are explained here:
# http://ambermd.org/antechamber/gaff.pdf
- # For reference, the original gaff.dat file and format documenation are here:
+ # For reference, the original gaff.dat file and format documentation are here:
# http://ambermd.org/AmberTools-get.html
# http://ambermd.org/formats.html#parm.dat
# ----------------------------------------------------------------------
diff --git a/tools/moltemplate/src/ttree.py b/tools/moltemplate/src/ttree.py
index 87c385f27b..cddc9b8ac6 100644
--- a/tools/moltemplate/src/ttree.py
+++ b/tools/moltemplate/src/ttree.py
@@ -5177,7 +5177,7 @@ def BasicUI(settings,
# Parsing, and compiling is a multi-pass process.
- # Step 1: Read in the StaticObj (class) defintions, without checking
+ # Step 1: Read in the StaticObj (class) definitions, without checking
# whether or not the instance_children refer to valid StaticObj types.
sys.stderr.write('parsing the class definitions...')
static_tree_root.Parse(settings.lex)
diff --git a/tools/msi2lmp/frc_files/pcff.frc b/tools/msi2lmp/frc_files/pcff.frc
index ce24f000cb..a06b04202a 100644
--- a/tools/msi2lmp/frc_files/pcff.frc
+++ b/tools/msi2lmp/frc_files/pcff.frc
@@ -158,7 +158,7 @@
1.0 1 op 15.99940 O 2 sp2 aromatic in 5 membered ring
3.0 10 osh 15.99491 O 2 oxygen atom in terminal hydroxyl group on silicon
1.0 1 osi 16.00000 O 2 siloxane oxygen
- 3.0 10 oss 15.99491 O 2 oxygen atom betweem two silicons
+ 3.0 10 oss 15.99491 O 2 oxygen atom between two silicons
2.0 5 oz 15.99940 O 2 ester oxygen in carbonate
1.0 1 p 30.97380 P 4 general phosphorous atom
1.0 1 p= 30.97380 P 5 phosphazene phosphorous atom
From fc9eebb9367cdb335e87ce982882857f1f189be6 Mon Sep 17 00:00:00 2001
From: Richard Berger
Date: Sun, 5 Mar 2017 21:23:41 -0500
Subject: [PATCH 08/15] Added spellcheck utility to documentation build
Uses the sphinxcontrib-spelling extension and requires PyEnchant and
aspell-en to be installed.
Adds the optional make target 'spelling' which produces the file
spelling/output.txt. It contains all words it detects.
Due to the large number of false positives, words in
utils/sphinx-config/false_positives.txt are ignored.
---
doc/.gitignore | 1 +
doc/Makefile | 17 +-
doc/utils/sphinx-config/conf.py | 7 +
doc/utils/sphinx-config/false_positives.txt | 2183 +++++++++++++++++++
4 files changed, 2207 insertions(+), 1 deletion(-)
create mode 100644 doc/utils/sphinx-config/false_positives.txt
diff --git a/doc/.gitignore b/doc/.gitignore
index bcd8f6db71..7d30949237 100644
--- a/doc/.gitignore
+++ b/doc/.gitignore
@@ -1,4 +1,5 @@
/html
+/spelling
/LAMMPS.epub
/LAMMPS.mobi
/Manual.pdf
diff --git a/doc/Makefile b/doc/Makefile
index e05715522b..79558674d7 100644
--- a/doc/Makefile
+++ b/doc/Makefile
@@ -22,7 +22,7 @@ endif
SOURCES=$(wildcard src/*.txt)
OBJECTS=$(SOURCES:src/%.txt=$(RSTDIR)/%.rst)
-.PHONY: help clean-all clean epub html pdf old venv
+.PHONY: help clean-all clean epub html pdf old venv spelling
# ------------------------------------------
@@ -44,6 +44,10 @@ clean-all:
clean:
rm -rf $(RSTDIR) html
+ rm -rf spelling
+
+clean-spelling:
+ rm -rf spelling
html: $(OBJECTS)
@(\
@@ -64,6 +68,17 @@ html: $(OBJECTS)
@rm -rf html/USER/*/*.[sg]*
@echo "Build finished. The HTML pages are in doc/html."
+spelling: $(OBJECTS) utils/sphinx-config/false_positives.txt
+ @(\
+ . $(VENV)/bin/activate ;\
+ pip install sphinxcontrib-spelling ;\
+ cp -r src/* $(RSTDIR)/ ;\
+ cp utils/sphinx-config/false_positives.txt $(RSTDIR)/ ;\
+ sphinx-build -b spelling -c utils/sphinx-config -d $(BUILDDIR)/doctrees $(RSTDIR) spelling ;\
+ deactivate ;\
+ )
+ @echo "Spell check finished."
+
epub: $(OBJECTS)
@mkdir -p epub
@rm -f LAMMPS.epub
diff --git a/doc/utils/sphinx-config/conf.py b/doc/utils/sphinx-config/conf.py
index 2b4950519a..9cca50b3bf 100644
--- a/doc/utils/sphinx-config/conf.py
+++ b/doc/utils/sphinx-config/conf.py
@@ -299,4 +299,11 @@ more information about the code and its uses.
epub_author = 'The LAMMPS Developers'
+# configure spelling extension if present
+import importlib.util
+spelling_spec = importlib.util.find_spec("sphinxcontrib.spelling")
+if spelling_spec:
+ extensions.append('sphinxcontrib.spelling')
+ spelling_lang='en_US'
+ spelling_word_list_filename='false_positives.txt'
diff --git a/doc/utils/sphinx-config/false_positives.txt b/doc/utils/sphinx-config/false_positives.txt
new file mode 100644
index 0000000000..c6cd74f613
--- /dev/null
+++ b/doc/utils/sphinx-config/false_positives.txt
@@ -0,0 +1,2183 @@
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+Streitz
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+usr
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+utils
+Uttormark
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+Vectorized
+vel
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+Verlet
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+vibrational
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+virtualenv
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+viscously
+vizplotgui
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+VMDARCH
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+Yu
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+Yukawa
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+zbl
+ZBL
+Zc
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+zflag
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+zhi
+Zhou
+Zhu
+zi
+Zi
+ziegenhain
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From 32708860a9fa6a80b887205da3aa8fd76b2b53a5 Mon Sep 17 00:00:00 2001
From: Richard Berger
Date: Tue, 7 Mar 2017 00:27:35 -0500
Subject: [PATCH 09/15] Add remaining false positives
---
doc/utils/sphinx-config/false_positives.txt | 482 +++++++++++++++++++-
1 file changed, 481 insertions(+), 1 deletion(-)
diff --git a/doc/utils/sphinx-config/false_positives.txt b/doc/utils/sphinx-config/false_positives.txt
index c6cd74f613..63c6542237 100644
--- a/doc/utils/sphinx-config/false_positives.txt
+++ b/doc/utils/sphinx-config/false_positives.txt
@@ -174,6 +174,7 @@ bcc
bcolor
bdiam
Beckman
+behaviour
Belak
Bellott
benchmarking
@@ -250,7 +251,6 @@ Buyl
Bybee
bz
cadetblue
-calcalation
caltech
Caltech
Campana
@@ -323,6 +323,7 @@ coaxstk
codebase
coeff
Coeff
+CoefficientN
coeffs
Coeffs
Colberg
@@ -772,8 +773,14 @@ funroll
fx
fy
fz
+Gahler
gainsboro
+Galindo
+gammaA
gammaFactor
+gammaR
+Gan
+GaN
ganzenmueller
Ganzenmuller
Gao
@@ -785,35 +792,50 @@ Gavhane
gayberne
gcc
gcmc
+gdot
+GeC
georg
Georg
Germann
+Germano
gerolf
Gerolf
gettimeofday
gewald
+Gezelter
Gflop
gfortran
ghostwhite
Giacomo
gif
gifsicle
+Gillan
+Gingold
+github
+Github
gjf
gjwagne
gl
gld
gle
+globbing
+Glosli
Glotzer
gmail
gmake
gmask
Gmask
Gordan
+GPa
gpu
+gpuID
gpus
graining
Graining
Grama
+grana
+granregion
+graphene
Greathouse
greenyellow
Greffet
@@ -823,12 +845,18 @@ Grest
Grigera
grmask
Grmask
+gromacs
+Gromacs
Gronbech
+Groot
+groupbig
Grueneisen
+gsmooth
gstyle
GTL
gui
guidline
+Gumbsch
Gunsteren
Gunzenmuller
Guo
@@ -838,41 +866,62 @@ gzipped
Haak
Hafskjold
Halperin
+Hamaker
haptic
+Hara
Harpertown
+Harting
+Hartree
+Hartrees
Hasan
Hayoun
Hayre
+hbcut
+hbnewflag
hbond
hcp
+heatconduction
Hebenstreit
+Hecht
Heenen
Hendrik
Henin
Henkelman
henrich
Henrich
+heristics
+Herrmann
+Hertizian
hertzian
+Hertzsch
hexahedrons
hexatic
hexorder
Heyes
+HfO
+hgrid
Hibbs
Higdon
+Hilger
histo
histogrammed
histogramming
hmaktulga
+hoc
Hofling
Holian
Holm
+holonomic
Homebrew
+hooke
+Hookean
hotpink
howto
Howto
Hoyt
hstyle
html
+hTST
hu
hugoniostat
Hugoniostat
@@ -882,16 +931,27 @@ hwloc
hydrogens
hydrostatic
hydrostatically
+Hynninen
+Hyoungki
+hyperradius
hyperspherical
hyperthreaded
+Hyperthreading
+ibar
ibm
icc
icosohedral
+idealgas
+ideaology
+IDR
+ielement
ieni
ifdefs
iff
ifort
+Ihle
ij
+ijk
ijkl
ik
Ikeshoji
@@ -905,21 +965,27 @@ Imageint
Imagemagick
imd
Impey
+imporopers
impropers
Impropers
+imroper
includelink
incompressible
+incrementing
indenter
indenters
indianred
inertiax
inertiay
inertiaz
+infty
inhomogeneities
inhomogeneous
init
initializations
+InP
inregion
+integrations
integrators
Integrators
intel
@@ -927,7 +993,11 @@ intelmpi
interal
interatomic
Interatomic
+interconvert
+intergation
+interial
intermolecular
+interstitials
intra
intramolecular
ints
@@ -938,8 +1008,11 @@ ionocovalent
iparam
ipi
ipp
+IPython
+Isele
isenthalpic
iso
+isodemic
isoenergetic
isoenthalpic
isokinetic
@@ -947,8 +1020,10 @@ isomorphism
isothermal
isotropically
isovolume
+Isralewitz
iteratively
Ith
+Itsets
itype
itypeN
Ivector
@@ -969,20 +1044,28 @@ Iyz
iz
izcm
ized
+Izrailev
+Izumi
Izvekov
izz
Izz
+Jacobsen
jagreat
james
Janssens
Jaramillo
+Jarzynski
jatempl
+jea
jec
Jeffers
jewett
Jewett
+ji
Jiang
Jiao
+jik
+JIK
jku
Joannopoulos
Jochim
@@ -994,14 +1077,19 @@ jpeglib
jpg
JPG
jpl
+Jth
jtype
jtypeN
Julien
+Jupyter
+Justo
+Jusufi
Jx
Jy
Jz
jzimmer
Kadiri
+Kalia
Kamberaj
Kapfer
Karlsruhe
@@ -1009,6 +1097,7 @@ Karplus
Karttunen
kate
Kaufmann
+Kayser
kb
kB
kbit
@@ -1017,29 +1106,40 @@ kcal
Kd
ke
KE
+Keblinski
keflag
Keir
Kelchner
+Kelkar
Kemper
Keyes
Khersonskii
Khvostov
Ki
kim
+kJ
kk
+Klahn
+Klapp
Kloss
kmax
Kmax
knl
Kohlmeyer
kokkos
+Kolafa
Kollman
+Kondor
konglt
+Koning
Kooser
+Koskinen
+Kosztin
Kp
Kraker
Kraus
Kremer
+Kress
kspace
Kspace
KSpace
@@ -1049,17 +1149,23 @@ kth
Kth
Kub
Kubo
+Kumagai
Kumar
+Kuronen
Kusters
Kutta
kx
+Lackmann
Ladd
+lagrangian
+lambdai
lamda
lammps
Lammps
LAMMPS
lammpsplot
Lamoureux
+Landron
langevin
Langevin
Langston
@@ -1068,18 +1174,31 @@ Larentzos
Laroche
lars
latencies
+lattce
+Laupretre
lavenderblush
lawngreen
+lB
lbl
LBtype
+lcbop
ld
ldfftw
ldg
+Lechman
+Lehoucq
Leimkuhler
+leiu
lemonchiffon
+Lenart
+lennard
Lennard
+Lenosky
Lett
Leuven
+Lewy
+lgvdw
+Liang
libAtoms
libdir
libgpu
@@ -1095,6 +1214,7 @@ libpoems
librar
libreax
libs
+ligand
lightblue
lightcoral
lightcyan
@@ -1110,12 +1230,16 @@ lightsteelblue
lightyellow
Likhtman
limegreen
+Lindahl
lineflag
lineforce
linesearch
linux
Liouville
Lisal
+listfile
+Littmark
+Liu
Livermore
lj
lm
@@ -1130,22 +1254,31 @@ localTemp
localvectors
logfile
logfreq
+logicals
Lomdahl
lookups
Lookups
+LoopVar
Lorant
lossy
lps
lrt
lsfftw
ltbbmalloc
+lubricateU
+lucy
+Lussetti
Lustig
lx
ly
+Lybrand
+Lyulin
lz
Mackay
Mackrodt
+macroparticle
Madura
+Magda
Maginn
mainboards
makefile
@@ -1153,14 +1286,18 @@ Makefile
makefiles
Makefiles
makelist
+Makse
malloc
Malolepsza
+Manby
Mandadapu
+Manh
manifoldforce
Manolopoulos
manybody
MANYBODY
Maras
+Marrink
Marsaglia
Marseille
Martyna
@@ -1169,22 +1306,27 @@ massless
masstotal
Matchett
matlab
+matplotlib
Mattox
Mattson
maxangle
maxbond
+maxeval
Maxfoo
maxit
maxiter
maxsize
maxspecial
maxSteps
+maxX
mbt
Mbytes
MBytes
McLachlan
md
+mdf
meam
+meamf
mech
mechanice
mechanim
@@ -1198,14 +1340,20 @@ mediumslateblue
mediumspringgreen
mediumturquoise
mediumvioletred
+Mees
+Mehl
+Mei
Meloni
+Melrose
Mem
memalign
MEMALIGN
membered
+Mendelev
mer
Meremianin
Merz
+mescscopic
meshless
meso
mesocopic
@@ -1214,21 +1362,29 @@ mesoscale
mesoscopic
metadynamics
Metadynamics
+methine
Metin
Mezei
mgpt
MGPT
+mgptfast
+mh
micelle
michael
michele
Mickel
microcanonical
+microelastic
microporous
+Microscale
+microsec
midnightblue
+mie
Mie
Mikami
Militzer
Minary
+mincap
minima
minimizations
minimizer
@@ -1239,13 +1395,18 @@ mintcream
Mintmire
mis
Mises
+Mishin
Mishra
mistyped
mistyrose
+Mj
mK
+mkdir
mkv
mlparks
mlutiple
+modc
+Modell
modelled
modelling
Modelling
@@ -1256,11 +1417,18 @@ molfile
Molfile
moltemplate
momoner
+Monaghan
Monaghans
+monodisperse
+monodispersity
+monovalent
+Montalenti
Montero
Morefoo
+morris
Morriss
morse
+Moseler
Moskalev
mov
mpi
@@ -1279,40 +1447,64 @@ msd
msi
MSI
msm
+msse
msst
+Mtchell
Mth
mtk
+Mtotal
+Muccioli
Mukherjee
+Mulders
multibody
Multibody
+multicenter
multicmd
multicore
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multinode
multiphysics
multiscale
multisectioning
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Multithreading
Mundy
+Murdick
+Murtola
+Murty
Muser
mutli
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muVT
mux
muy
muz
+mv
+mV
+Mvapich
MxN
myCompute
+myIndex
+mylammps
mysocket
myTemp
+myVec
+nabla
Nakano
namespace
namespaces
NaN
+Nangletype
+nangletypes
+Nangletypes
nano
nanoindentation
Nanoletters
nanometer
nanometers
nanoparticles
+nanosec
+Narulkar
nasa
nasr
Natoli
@@ -1324,41 +1516,67 @@ Navier
nb
Nbin
Nbins
+nbody
Nbody
+nbondtype
+Nbondtype
+nbondtypes
Nbondtypes
+nBOt
+nbrhood
Nbtypes
nc
Nc
nchunk
Nchunk
+ncoeff
ncorr
ncount
nd
+Ndihedraltype
Ndirango
ndof
Ndof
+Ndouble
+ndx
neb
+Neelov
neighbouring
+nelem
+Nelement
+Nelements
nemd
netcdf
+Neumann
nevery
Nevery
Newns
newtype
+Neyts
Nf
nfile
Nfile
Nfreq
+ng
Ng
nghost
Nghost
+Ngpu
nh
nharmonic
nhc
+NiAlH
+Nicklas
+Nimpropertype
+Ninteger
Nissila
+nist
+nitrides
+niu
Nk
nl
nlen
+Nlines
nlocal
Nlocal
Nlog
@@ -1366,7 +1584,12 @@ nm
Nm
Nmax
Nmin
+Nmols
+nn
+Nocedal
nocite
+nocoeff
+nodeless
noforce
Noid
Nonbond
@@ -1374,8 +1597,17 @@ nonbonded
nonequilibrium
nongauss
nonGaussian
+nonlocal
+Nonlocal
+Noordhoek
nopreliminary
+Nord
+norder
+Nordlund
normals
+Noskov
+noslip
+noticable
noutcol
Noutput
noutrow
@@ -1390,23 +1622,36 @@ nph
NpH
Nphi
nphug
+nprocs
Nprocs
npt
+nr
+Nr
+Nrecompute
Nrepeat
nreset
+Nrho
nrun
Ns
+Nsample
+nsec
Nskip
nsq
Nstart
nstats
+Nstep
+Nsteplast
Nstop
Nswap
Nt
Ntable
+ntheta
nthreads
+Ntptask
Ntype
+ntypes
Ntypes
+nucleotides
nulcear
num
numa
@@ -1415,6 +1660,7 @@ numerics
numpy
Numpy
Nvalue
+Nvaluelast
Nvalues
nvc
nvcc
@@ -1426,33 +1672,45 @@ nvt
Nwait
nx
Nx
+nxnodes
ny
Ny
nz
Nz
octahedral
+octants
ohenrich
+ok
+OKeefe
OKeefe
oldlace
+Oleinik
Olfason
olivedrab
Ollila
+omegaDD
omegax
omegay
omegaz
omp
OMP
+onelevel
oneway
+onn
ons
+OO
openKIM
OpenMP
opls
Oppelstrup
+optionns
orangered
orderomg
+organised
organometallic
orientational
orientorder
+Orlikowski
ornl
Ornstein
Orsi
@@ -1464,17 +1722,21 @@ outmost
outpur
outputss
outut
+overlayed
overviewed
Ovito
oxdna
oxDNA
+oxygens
padua
Padua
palegoldenrod
palegreen
paleturquoise
palevioletred
+Panagiotopoulos
Pandit
+Papaconstantopoulos
papayawhip
paquay
Paquay
@@ -1491,8 +1753,10 @@ parametrization
parametrized
params
Parinello
+parmin
Parrinello
Partay
+partices
Particuology
pastewka
Pastewka
@@ -1510,30 +1774,45 @@ pe
Peachey
peachpuff
Pearlman
+Pedersen
Peng
peratom
perfoms
+Pergamon
peri
Peridymaics
peridynamic
Peridynamic
peridynamics
Peridynamics
+Perram
persp
Persp
peru
Peskin
+Pettifor
pfactor
ph
Phillpot
phonon
+phophorous
+phosphide
+Physica
physik
+picocoulomb
+picocoulombs
+picogram
+picograms
picosecond
picoseconds
+picosend
pid
Pieter
pimd
+Pisarev
+Pishevar
Pitera
+pj
pjintve
planeforce
Plathe
@@ -1541,21 +1820,31 @@ Plimpton
plog
ploop
PloS
+plt
+pmb
pN
png
Poiseuille
+Polak
+polarizabilities
polarizability
polarizable
Polarizable
polarizables
Politano
+polyA
polybond
+polydisperse
+polydispersity
popen
popstore
pos
+Poschel
posix
Postma
postprocessing
+potin
+Pourtois
powderblue
ppn
pppm
@@ -1563,10 +1852,15 @@ prd
pre
Pre
prec
+preexponential
prefactor
+prefactors
+prepend
preprint
preprocessor
printf
+printflag
+Priya
proc
Proc
procs
@@ -1576,6 +1870,7 @@ Ps
pscreen
pscrozi
psec
+pseudodynamics
pseudopotential
Pstart
Pstop
@@ -1590,30 +1885,45 @@ pushded
pushstore
pvar
pw
+px
Px
+pxx
+Pxx
Pxy
py
Py
pydir
+pylammps
+PyLammps
pymol
pypar
+Pyy
+pz
Pz
+Pzz
qbmsst
qcore
+qdist
qE
qeq
QeQ
QEq
qfile
+qi
Qi
+qj
+Qj
Ql
qm
+Qmin
qmmm
qmol
qoffload
qopenmp
qoverride
qtb
+Quant
+quantic
quartic
quaternion
quaternions
@@ -1624,9 +1934,13 @@ quatw
Queteschiner
radian
radians
+Rafferty
+rahman
Rahman
Raman
ramped
+Ramprasad
+randomizations
Raphson
Rappe
Ravelo
@@ -1641,14 +1955,19 @@ rdc
rdf
README
realtime
+reamin
reax
ReaxFF
rebalance
rebalancing
+rebo
recentered
recentering
+recursing
+Ree
regoin
Reinders
+relect
relesed
relTol
remappings
@@ -1660,6 +1979,8 @@ Reneighboring
reneighborings
Rensselaer
reparametrizing
+representable
+repuls
rescale
rescaled
rescales
@@ -1667,12 +1988,17 @@ rescaling
Rescaling
respa
RESPA
+respecified
responder
+resquared
REsquared
restartfile
+rethrowing
rewrap
+rezwanur
rfac
rfile
+rg
Rg
Rhaphson
rheological
@@ -1681,13 +2007,16 @@ Rhodo
rhodopsin
rhosum
Ri
+Ribiere
richard
rigidID
rigidify
rij
Rij
RIj
+Rin
Rino
+RiRj
Risi
Rix
Riy
@@ -1701,11 +2030,13 @@ rmask
Rmask
rmax
Rmax
+rmdir
rmin
Rmin
RMS
rNEMD
ro
+Rockett
Ronchetti
Rosati
Rossky
@@ -1713,19 +2044,28 @@ rosybrown
rotationally
rotationsl
royalblue
+rozero
Rperp
rRESPA
Rspace
+Rubia
+Rudd
Rudra
Rudranarayan
Runge
runtime
+Rutuparna
rx
+Ryckaert
Rycroft
+Rydbergs
Rz
saddlebrown
Sadigh
saed
+safezone
+Safran
+Sagui
Salles
sandia
Sandia
@@ -1737,7 +2077,12 @@ Scalable
scalexy
scalexz
scaleyz
+Schaik
+Schlitter
+Schmid
+Schoen
Schulten
+Schunk
Schwen
scriping
Scripta
@@ -1745,9 +2090,11 @@ sdk
seagreen
Secor
sed
+segmental
sellerio
Sellerio
semiaxes
+semimetals
Semin
Sensable
setfl
@@ -1755,26 +2102,42 @@ setforce
setmask
Setmask
setpoint
+setvel
severeal
sfftw
Sg
Shan
+shapex
+shapey
+shapez
+shapshot
+shardlow
Shardlow
shawn
Shen
+Shenderova
Shiga
Shinoda
shockvel
+shoule
+si
SiC
+Siepmann
Sij
Sikandar
+Silbert
+Silling
+Simul
simulataneous
simulatoins
Sinnott
sinusoid
sinusoidally
+SiO
Sirk
Sival
+sizeI
+sizeJ
sizex
sjplimp
sjtu
@@ -1782,6 +2145,9 @@ skyblue
slateblue
slategray
slater
+Slepoy
+sligthly
+Sliozberg
sllod
smallint
Smallint
@@ -1793,9 +2159,17 @@ Smit
smtbq
sna
snad
+snapcoeff
+snaphots
+snapparam
snav
Sodani
+Soderlind
+softed
solvated
+Sorensen
+soundspeed
+Souza
sp
spacings
Spearot
@@ -1804,32 +2178,56 @@ sph
SPH
spheriods
spparks
+Springer
springgreen
sqrt
src
srd
+Srolovitz
+srp
srun
+ss
ssao
stamoore
stanford
+Starikov
+startstep
+Startstep
+statcoul
+statcoulombs
+statvolt
stdin
steelblue
+Stegailov
Steinhardt
+Steinhauser
+Stepaniants
stepwise
+Stesmans
Stillinger
+stk
Stockmayer
+Stoddard
stoichiometric
+stoichiometry
Stokesian
Stoll
+stopstep
Stouch
Straatsma
Stratford
Straub
+strcmp
streitz
Streitz
+Streiz
+strided
+strietz
Stukowski
+stylecomputes
Su
subbox
+subcutoff
subdirectory
subdomains
subinterval
@@ -1838,13 +2236,19 @@ Subramaniyan
subscripted
subscripting
substeps
+substyle
+substyles
sudo
Sukumaran
sumsq
Sunderland
superset
+supersphere
+Supinski
surc
+surfactants
sw
+Swegat
swiggle
Swiler
Swol
@@ -1854,15 +2258,21 @@ sy
Sy
symplectic
Synechococcus
+sys
sysdim
sysmte
+Syst
Sz
Tabbernor
+tabinner
Tadmor
tagint
Tait
+taitwater
Tajkhorshid
+tanh
taskset
+taubi
tchain
Tchain
Tcom
@@ -1874,21 +2284,31 @@ Telsa
tempCorrCoeff
templated
Templeton
+ters
tersoff
Tersoff
tesselation
tesselations
Tetot
tex
+tfmc
+tfMC
th
Thakkar
Thakker
+thb
+thei
+Theor
thermalization
thermalize
thermalized
thermalizing
thermo
+thermochemical
+thermochemistry
thermodynamic
+thermodynamically
+Thermophysical
thermostate
thermostated
thermostates
@@ -1897,44 +2317,75 @@ Thermostating
thermostatted
thermostatting
Thermostatting
+Thes
+Thess
Thexe
+Thijsse
Thirumalai
+threebody
+thrid
+thylakoid
THz
+Tij
Tildesley
timespan
+timestamp
+timestamps
timestep
timestepping
timesteps
+TiN
+TiO
+Tirrell
Titer
+Tji
+Tk
+Tkin
tloop
tlsph
+tmax
Tmax
tmd
Tmin
tmp
+tN
Tobias
tol
topologies
Torder
torsions
+Tosi
+Toukmaji
+Toxvaerd
+tpa
+tpc
+tptask
tqx
tqy
tqz
+tradeoff
traj
+transferability
translational
trate
+Tref
Tretyakov
tri
+triangleflag
triclinic
triflag
trigonal
trilinear
+tripflag
tris
+trj
trott
Trott
Trung
tscale
Tschopp
+Tsige
+Tsrd
Tstart
tstat
Tstop
@@ -1946,11 +2397,16 @@ tu
Tuckerman
tue
Turkand
+Tutein
+twobody
twojmax
Tx
txt
+typeI
+typeJ
typeN
Tz
+Tzou
ub
Uberuaga
uChem
@@ -1958,12 +2414,14 @@ uCond
Uhlenbeck
Ui
uk
+ul
uloop
ulsph
uMech
umin
Umin
un
+unary
unbonded
uncomment
uncompute
@@ -1978,21 +2436,37 @@ unix
unoptimized
unpadded
unphysical
+unphysically
unscaled
+unsets
+unshifted
+unsmoothed
+unsolvated
+unsplit
unstrained
untar
+untilted
upenn
+upto
Urbana
+usec
userguide
usr
util
utils
+utsa
Uttormark
uvm
uwo
vacf
+valent
Valeriu
valgrind
+Valone
+valuev
+Valuev
+valus
+valuse
Varshalovich
Varshney
vashishta
@@ -2002,21 +2476,27 @@ Vcm
vdim
vdisplace
vec
+vectorial
vectorization
vectorized
Vectorized
vel
+velocites
+Verlag
verlet
Verlet
ves
vhi
vibrational
+Vij
Vikas
virial
Virial
+virialmode
virials
virtualenv
virutal
+viscoelastic
viscoelasticity
viscosities
viscously
From 007f3c66a033805cbc6755fce6920da6e3e1385c Mon Sep 17 00:00:00 2001
From: Richard Berger
Date: Tue, 7 Mar 2017 00:51:31 -0500
Subject: [PATCH 10/15] Third batch of spelling fixes in manual
---
doc/src/2001/input_commands.html | 4 ++--
doc/src/99/basics.html | 2 +-
doc/src/99/crib.html | 2 +-
doc/src/99/input_commands.html | 2 +-
doc/src/Section_errors.txt | 8 +++----
doc/src/Section_history.txt | 2 +-
doc/src/Section_howto.txt | 24 +++++++++----------
doc/src/Section_modify.txt | 6 ++---
doc/src/Section_packages.txt | 10 ++++----
doc/src/Section_perf.txt | 2 +-
doc/src/Section_python.txt | 12 +++++-----
doc/src/Section_start.txt | 14 +++++------
.../atc/man_consistent_fe_initialization.html | 2 +-
doc/src/accelerate_intel.txt | 4 ++--
doc/src/accelerate_kokkos.txt | 2 +-
doc/src/angle_hybrid.txt | 2 +-
doc/src/atom_modify.txt | 8 +++----
doc/src/atom_style.txt | 4 ++--
doc/src/balance.txt | 16 ++++++-------
doc/src/body.txt | 4 ++--
doc/src/bond_hybrid.txt | 2 +-
doc/src/change_box.txt | 4 ++--
doc/src/comm_style.txt | 2 +-
doc/src/compute_angmom_chunk.txt | 2 +-
doc/src/compute_chunk_atom.txt | 2 +-
doc/src/compute_cna_atom.txt | 2 +-
doc/src/compute_com.txt | 2 +-
doc/src/compute_damage_atom.txt | 2 +-
doc/src/compute_dilatation_atom.txt | 2 +-
doc/src/compute_displace_atom.txt | 2 +-
doc/src/compute_event_displace.txt | 2 +-
doc/src/compute_msd.txt | 2 +-
doc/src/compute_msd_chunk.txt | 2 +-
doc/src/compute_msd_nongauss.txt | 4 ++--
doc/src/compute_pair.txt | 2 +-
doc/src/compute_plasticity_atom.txt | 2 +-
doc/src/compute_rdf.txt | 2 +-
doc/src/compute_saed.txt | 2 +-
doc/src/compute_temp_chunk.txt | 2 +-
doc/src/compute_temp_profile.txt | 2 +-
doc/src/compute_vacf.txt | 2 +-
doc/src/create_atoms.txt | 2 +-
doc/src/dihedral_hybrid.txt | 2 +-
doc/src/dump.txt | 2 +-
doc/src/dump_image.txt | 8 +++----
doc/src/dump_modify.txt | 2 +-
doc/src/fix_ave_chunk.txt | 2 +-
doc/src/fix_ave_correlate.txt | 2 +-
doc/src/fix_ave_time.txt | 2 +-
doc/src/fix_balance.txt | 12 +++++-----
doc/src/fix_bond_break.txt | 4 ++--
doc/src/fix_bond_create.txt | 4 ++--
doc/src/fix_bond_swap.txt | 2 +-
doc/src/fix_box_relax.txt | 4 ++--
doc/src/fix_cmap.txt | 2 +-
doc/src/fix_controller.txt | 2 +-
doc/src/fix_deposit.txt | 6 ++---
doc/src/fix_evaporate.txt | 4 ++--
doc/src/fix_indent.txt | 4 ++--
doc/src/fix_lb_fluid.txt | 2 +-
doc/src/fix_modify.txt | 2 +-
doc/src/fix_move.txt | 2 +-
doc/src/fix_mscg.txt | 2 +-
doc/src/fix_phonon.txt | 2 +-
doc/src/fix_pour.txt | 4 ++--
doc/src/fix_property_atom.txt | 2 +-
doc/src/fix_qeq.txt | 2 +-
doc/src/fix_qeq_comb.txt | 6 ++---
doc/src/fix_restrain.txt | 2 +-
doc/src/fix_rigid.txt | 2 +-
doc/src/fix_rx.txt | 2 +-
doc/src/fix_saed_vtk.txt | 4 ++--
doc/src/fix_smd_wall_surface.txt | 2 +-
doc/src/fix_spring_self.txt | 2 +-
doc/src/fix_srd.txt | 8 +++----
doc/src/fix_temp_csvr.txt | 2 +-
doc/src/fix_temp_rescale.txt | 2 +-
doc/src/fix_tfmc.txt | 2 +-
doc/src/fix_ttm.txt | 4 ++--
doc/src/fix_vector.txt | 2 +-
doc/src/fix_viscosity.txt | 2 +-
doc/src/fix_wall.txt | 2 +-
doc/src/fix_wall_gran.txt | 2 +-
doc/src/fix_wall_gran_region.txt | 4 ++--
doc/src/fix_wall_piston.txt | 2 +-
doc/src/if.txt | 2 +-
doc/src/improper_hybrid.txt | 2 +-
doc/src/jump.txt | 2 +-
doc/src/kspace_style.txt | 2 +-
doc/src/minimize.txt | 2 +-
doc/src/neb.txt | 8 +++----
doc/src/package.txt | 12 +++++-----
doc/src/pair_airebo.txt | 2 +-
doc/src/pair_bop.txt | 8 +++----
doc/src/pair_comb.txt | 2 +-
doc/src/pair_coul.txt | 6 ++---
doc/src/pair_coul_diel.txt | 6 ++---
doc/src/pair_edip.txt | 2 +-
doc/src/pair_eff.txt | 6 ++---
doc/src/pair_eim.txt | 2 +-
doc/src/pair_exp6_rx.txt | 4 ++--
doc/src/pair_gran.txt | 2 +-
doc/src/pair_hbond_dreiding.txt | 2 +-
doc/src/pair_hybrid.txt | 2 +-
doc/src/pair_lj.txt | 2 +-
doc/src/pair_lj_long.txt | 2 +-
doc/src/pair_lj_smooth.txt | 2 +-
doc/src/pair_lj_soft.txt | 8 +++----
doc/src/pair_lubricate.txt | 2 +-
doc/src/pair_mgpt.txt | 2 +-
doc/src/pair_peri.txt | 2 +-
doc/src/pair_quip.txt | 4 ++--
doc/src/pair_resquared.txt | 6 ++---
doc/src/pair_smd_ulsph.txt | 2 +-
doc/src/pair_soft.txt | 2 +-
doc/src/pair_sph_idealgas.txt | 2 +-
doc/src/pair_sph_lj.txt | 2 +-
doc/src/pair_sph_taitwater.txt | 2 +-
doc/src/pair_table.txt | 2 +-
doc/src/pair_tri_lj.txt | 2 +-
doc/src/processors.txt | 6 ++---
doc/src/python.txt | 4 ++--
doc/src/read_data.txt | 2 +-
doc/src/read_dump.txt | 4 ++--
doc/src/read_restart.txt | 2 +-
doc/src/region.txt | 4 ++--
doc/src/rerun.txt | 6 ++---
doc/src/restart.txt | 2 +-
doc/src/run_style.txt | 6 ++---
doc/src/set.txt | 2 +-
doc/src/thermo.txt | 2 +-
doc/src/thermo_style.txt | 2 +-
doc/src/timer.txt | 4 ++--
doc/src/tutorial_drude.txt | 4 ++--
doc/src/units.txt | 2 +-
doc/src/variable.txt | 14 +++++------
doc/src/write_dump.txt | 2 +-
doc/utils/sphinx-config/false_positives.txt | 6 ++++-
138 files changed, 254 insertions(+), 250 deletions(-)
diff --git a/doc/src/2001/input_commands.html b/doc/src/2001/input_commands.html
index f80185a9f3..797d6bec4e 100644
--- a/doc/src/2001/input_commands.html
+++ b/doc/src/2001/input_commands.html
@@ -464,7 +464,7 @@ the angletype option can only be assigned to a "fix style" of "shake",
entirely rigid (e.g. water)
the angletype option enables an additional check when SHAKE constraints
are computed: if a cluster is of size 3 and both bonds in
- the cluster are of a bondtype specified by the 2nd paramter of
+ the cluster are of a bondtype specified by the 2nd parameter of
angletype, then the cluster is SHAKEn with an additional angle
constraint that makes it rigid, using the equilibrium angle appropriate
to the specified angletype
@@ -1566,7 +1566,7 @@ mesh dimensions that are power-of-two are fastest for FFTs, but any sizes
can be used that are supported by native machine libraries
this command is optional - if not used, a default
mesh size will be chosen to satisfy accuracy criterion - if used, the
- specifed mesh size will override the default
+ specified mesh size will override the default
diff --git a/doc/src/99/basics.html b/doc/src/99/basics.html
index 0276460723..b6236f4bf9 100644
--- a/doc/src/99/basics.html
+++ b/doc/src/99/basics.html
@@ -201,7 +201,7 @@ The tools directory also has a F77 program called setup_chain.f
(compile and link with print.c) which can be used to generate random
initial polymer configurations for bead-spring models like those used
in examples/polymer. It uses an input polymer definition file (see
-examples/polymer for two sample def files) that specfies how many
+examples/polymer for two sample def files) that specifies how many
chains of what length, a random number seed, etc.