fix broken links
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@ -167,7 +167,7 @@ sub-particle displacements should reflect the fact the body is defined
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withing a general triclinic box with edge vectors **A**,**B**,**C**.
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LAMMPS will rotate the box to convert it to a restricted triclinic
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box. This operation will also rotate the orientation of the body
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particles. See the :doc:`Howto triclinic <Howto_triclininc>` doc page
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particles. See the :doc:`Howto triclinic <Howto_triclinic>` doc page
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for more details.
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The :doc:`pair_style body/nparticle <pair_body_nparticle>` command can be used
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@ -288,7 +288,7 @@ defined withing a general triclinic box with edge vectors
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**A**,**B**,**C**. LAMMPS will rotate the box to convert it to a
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restricted triclinic box. This operation will also rotate the
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orientation of the body particles. See the :doc:`Howto triclinic
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<Howto_triclininc>` doc page for more details.
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<Howto_triclinic>` doc page for more details.
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The :doc:`pair_style body/rounded/polygon <pair_body_rounded_polygon>`
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command can be used with this body style to compute body/body
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@ -463,7 +463,7 @@ defined withing a general triclinic box with edge vectors
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**A**,**B**,**C**. LAMMPS will rotate the box to convert it to a
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restricted triclinic box. This operation will also rotate the
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orientation of the body particles. See the :doc:`Howto triclinic
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<Howto_triclininc>` doc page for more details.
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<Howto_triclinic>` doc page for more details.
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The :doc:`pair_style body/rounded/polhedron
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<pair_body_rounded_polyhedron>` command can be used with this body
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@ -17,9 +17,9 @@ is created by one of these commands:
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* :doc:`read_dump <read_dump>`
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Internally, LAMMPS defines box size parameters lx,ly,lz where lx =
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xhi-xlo, and similarly in the y and z dimensions. The 6 parameters,
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as well as lx,ly,lz, can be output via the :doc:`thermo_style custom
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<thermo_style>` command. See the :doc:'Howto 2d <Howto_2d>` doc page
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xhi-xlo, and similarly in the y and z dimensions. The 6 parameters, as
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well as lx,ly,lz, can be output via the :doc:`thermo_style custom
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<thermo_style>` command. See the :doc:`Howto 2d <Howto_2d>` doc page
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for info on how zlo and zhi are defined for 2d simulations.
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----------
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@ -30,7 +30,7 @@ Triclinic simulation boxes
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LAMMPS also allows simulations to be performed using triclinic
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(non-orthogonal) simulation boxes shaped as a 3d parallelepiped with
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triclinic symmetry. For 2d simulations a triclinic simulation box is
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effectively a parallelogram; see the :doc:'Howto 2d <Howto_2d>` doc
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effectively a parallelogram; see the :doc:`Howto 2d <Howto_2d>` doc
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page for details.
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One use of triclinic simulation boxes is to model solid-state crystals
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@ -288,7 +288,7 @@ with LAMMPS or third-party tools can read this format, as does the
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For all these styles, the dimensions of the simulation box are
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included in each snapshot. The simulation box in LAMMPS can be
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defined in one of 3 ways: orthogonal, restricted triclinic, and
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general triclinic. See the :doc:`Howto triclinic <Howto_triclininc>`
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general triclinic. See the :doc:`Howto triclinic <Howto_triclinic>`
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doc page for a detailed description of all 3 options.
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For an orthogonal simulation box the box information is formatted as:
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@ -668,7 +668,7 @@ General triclinic simulation box output for the *atom* and *custom* styles:
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As mentioned above, the simulation box can be defined as a general
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triclinic box, which means that 3 arbitrary box edge vectors **A**,
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**B**, **C** can be specified. See the :doc:`Howto triclinic
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<Howto_triclininc>` doc page for a detailed description of general
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<Howto_triclinic>` doc page for a detailed description of general
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triclinic boxes.
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This option is provided as a convenience for users who may be
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@ -200,7 +200,7 @@ the Z direction.
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The *triclinic/general* option specifies that the defined lattice is
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for use with a general triclinic simulation box, as opposed to an
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orthogonal or restricted triclinic box. The :doc:`Howto triclinic
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<Howto_triclnic>` doc page explains all 3 kinds of simluation boxes
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<Howto_triclinic>` doc page explains all 3 kinds of simluation boxes
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LAMMPS supports.
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If this option is specified, a *custom* lattice style must be used.
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@ -923,7 +923,7 @@ zero.
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data file in the direction of the **A** edge vector. Likewise the
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(x0,y0,z0) per-atom strain-free coordinates should be inside the
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general triclinic simulation box as explained in the note above.
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See the :doc:`Howto triclinic <Howto_triclininc>` doc page for more
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See the :doc:`Howto triclinic <Howto_triclinic>` doc page for more
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details.
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The atom-ID is used to identify the atom throughout the simulation and
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@ -1675,7 +1675,7 @@ Wz are in units of angular velocity (radians/time).
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If the data file defines a general triclinic box, then each of the 3
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vectors (translational velocity, angular momentum, angular velocity)
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should be specified for the rotated coordinate axes of the general
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triclinic box. See the :doc:`Howto triclinic <Howto_triclininc>` doc
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triclinic box. See the :doc:`Howto triclinic <Howto_triclinic>` doc
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page for more details.
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For atom_style hybrid, following the 4 initial values (ID,vx,vy,vz),
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