git-svn-id: svn://svn.icms.temple.edu/lammps-ro/trunk@3346 f3b2605a-c512-4ea7-a41b-209d697bcdaa
This commit is contained in:
@ -21,11 +21,11 @@
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<LI>style = <I>xlo</I> or <I>xhi</I> or <I>ylo</I> or <I>yhi</I> or <I>zlo</I> or <I>zhi</I>
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<LI>style = <I>xlo</I> or <I>xhi</I> or <I>ylo</I> or <I>yhi</I> or <I>zlo</I> or <I>zhi</I>
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<LI>coord = position of wall
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<LI>coord = position of wall (distance units)
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<LI>epsilon = Lennard-Jones epsilon for wall-particle interaction
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<LI>epsilon = Lennard-Jones epsilon for wall-particle interaction (energy units)
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<LI>sigma = Lennard-Jones sigma for wall-particle interaction
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<LI>sigma = Lennard-Jones sigma for wall-particle interaction (distance units)
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<LI>cutoff = distance from wall at which wall-particle interaction is cut off (distance units)
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<LI>cutoff = distance from wall at which wall-particle interaction is cut off (distance units)
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@ -15,9 +15,9 @@ fix ID group-ID wall/lj126 style coord epsilon sigma cutoff keyword values ... :
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ID, group-ID are documented in "fix"_fix.html command :ulb,l
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ID, group-ID are documented in "fix"_fix.html command :ulb,l
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wall/lj126 = style name of this fix command :l
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wall/lj126 = style name of this fix command :l
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style = {xlo} or {xhi} or {ylo} or {yhi} or {zlo} or {zhi} :l
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style = {xlo} or {xhi} or {ylo} or {yhi} or {zlo} or {zhi} :l
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coord = position of wall :l
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coord = position of wall (distance units) :l
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epsilon = Lennard-Jones epsilon for wall-particle interaction :l
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epsilon = Lennard-Jones epsilon for wall-particle interaction (energy units) :l
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sigma = Lennard-Jones sigma for wall-particle interaction :l
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sigma = Lennard-Jones sigma for wall-particle interaction (distance units) :l
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cutoff = distance from wall at which wall-particle interaction is cut off (distance units) :l
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cutoff = distance from wall at which wall-particle interaction is cut off (distance units) :l
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one or more keyword/value pairs may be appended :l
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one or more keyword/value pairs may be appended :l
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keyword = {vel} :l
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keyword = {vel} :l
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@ -21,11 +21,11 @@
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<LI>style = <I>xlo</I> or <I>xhi</I> or <I>ylo</I> or <I>yhi</I> or <I>zlo</I> or <I>zhi</I>
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<LI>style = <I>xlo</I> or <I>xhi</I> or <I>ylo</I> or <I>yhi</I> or <I>zlo</I> or <I>zhi</I>
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<LI>coord = position of wall
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<LI>coord = position of wall (distance units)
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<LI>epsilon = Lennard-Jones epsilon for wall-particle interaction
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<LI>epsilon = Lennard-Jones epsilon for wall-particle interaction (energy units)
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<LI>sigma = Lennard-Jones sigma for wall-particle interaction
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<LI>sigma = Lennard-Jones sigma for wall-particle interaction (distance units)
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<LI>cutoff = distance from wall at which wall-particle interaction is cut off (distance units)
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<LI>cutoff = distance from wall at which wall-particle interaction is cut off (distance units)
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@ -15,9 +15,9 @@ fix ID group-ID wall/lj93 style coord epsilon sigma cutoff keyword values ... :p
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ID, group-ID are documented in "fix"_fix.html command :ulb,l
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ID, group-ID are documented in "fix"_fix.html command :ulb,l
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wall/lj93 = style name of this fix command :l
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wall/lj93 = style name of this fix command :l
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style = {xlo} or {xhi} or {ylo} or {yhi} or {zlo} or {zhi} :l
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style = {xlo} or {xhi} or {ylo} or {yhi} or {zlo} or {zhi} :l
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coord = position of wall :l
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coord = position of wall (distance units) :l
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epsilon = Lennard-Jones epsilon for wall-particle interaction :l
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epsilon = Lennard-Jones epsilon for wall-particle interaction (energy units) :l
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sigma = Lennard-Jones sigma for wall-particle interaction :l
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sigma = Lennard-Jones sigma for wall-particle interaction (distance units) :l
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cutoff = distance from wall at which wall-particle interaction is cut off (distance units) :l
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cutoff = distance from wall at which wall-particle interaction is cut off (distance units) :l
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one or more keyword/value pairs may be appended :l
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one or more keyword/value pairs may be appended :l
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keyword = {vel} :l
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keyword = {vel} :l
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@ -36,7 +36,7 @@ Lennard-Jones particle of size sigma.
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</P>
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</P>
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<CENTER><IMG SRC = "Eqs/pair_colloid_cc.jpg">
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<CENTER><IMG SRC = "Eqs/pair_colloid_cc.jpg">
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</CENTER>
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</CENTER>
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<P>A_cc is the Hamaker constant, a1 and a2 are the radii of the two
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<P>where A_cc is the Hamaker constant, a1 and a2 are the radii of the two
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colloidal particles, and Rc is the cutoff. This equation results from
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colloidal particles, and Rc is the cutoff. This equation results from
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describing each colloidal particle as an integrated collection of
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describing each colloidal particle as an integrated collection of
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Lennard-Jones particles of size sigma and is derived in
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Lennard-Jones particles of size sigma and is derived in
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@ -46,7 +46,7 @@ Lennard-Jones particles of size sigma and is derived in
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</P>
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</P>
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<CENTER><IMG SRC = "Eqs/pair_colloid_cs.jpg">
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<CENTER><IMG SRC = "Eqs/pair_colloid_cs.jpg">
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</CENTER>
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</CENTER>
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<P>A_cs is the Hamaker constant, a is the radius of the colloidal
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<P>where A_cs is the Hamaker constant, a is the radius of the colloidal
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particle, and Rc is the cutoff. This formula is derived from the
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particle, and Rc is the cutoff. This formula is derived from the
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colloid-colloid interaction, letting one of the particle sizes go to
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colloid-colloid interaction, letting one of the particle sizes go to
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zero.
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zero.
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@ -33,7 +33,7 @@ The colloid-colloid interaction energy is given by
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:c,image(Eqs/pair_colloid_cc.jpg)
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:c,image(Eqs/pair_colloid_cc.jpg)
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A_cc is the Hamaker constant, a1 and a2 are the radii of the two
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where A_cc is the Hamaker constant, a1 and a2 are the radii of the two
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colloidal particles, and Rc is the cutoff. This equation results from
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colloidal particles, and Rc is the cutoff. This equation results from
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describing each colloidal particle as an integrated collection of
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describing each colloidal particle as an integrated collection of
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Lennard-Jones particles of size sigma and is derived in
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Lennard-Jones particles of size sigma and is derived in
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@ -43,7 +43,7 @@ The colloid-solvent interaction energy is given by
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:c,image(Eqs/pair_colloid_cs.jpg)
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:c,image(Eqs/pair_colloid_cs.jpg)
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A_cs is the Hamaker constant, a is the radius of the colloidal
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where A_cs is the Hamaker constant, a is the radius of the colloidal
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particle, and Rc is the cutoff. This formula is derived from the
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particle, and Rc is the cutoff. This formula is derived from the
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colloid-colloid interaction, letting one of the particle sizes go to
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colloid-colloid interaction, letting one of the particle sizes go to
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zero.
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zero.
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