Address akohlmey comments
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@ -46,6 +46,8 @@ Here is a brief list of some the class methods in the Pair class that
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+---------------------------------+------------------------------------------------------------------------+
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| compute_inner/middle/outer | versions of compute used by rRESPA |
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+---------------------------------+------------------------------------------------------------------------+
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| compute_atomic_energy | energy of one atom, equivalent to per-atom energy |
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+---------------------------------+------------------------------------------------------------------------+
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| memory_usage | return estimated amount of memory used by the pair style |
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+---------------------------------+------------------------------------------------------------------------+
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| modify_params | process arguments to pair_modify command |
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@ -122,3 +124,5 @@ setting.
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+---------------------------------+-------------------------------------------------------------+---------+
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| spinflag | 1 if compatible with spin kspace_style | 0 |
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+---------------------------------+-------------------------------------------------------------+---------+
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| atomic_energy_enable | 1 if compute_atomic_energy() routine exists | 0 |
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+---------------------------------+-------------------------------------------------------------+---------+
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@ -163,7 +163,6 @@ FixSemiGrandCanonicalMC::FixSemiGrandCanonicalMC(LAMMPS *_lmp, int narg, char **
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if (iarg + 1 + atom->ntypes > narg)
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utils::missing_cmd_args(FLERR, "fix sgcmc variance", error);
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iarg++;
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// printf("variance iarg = %d narg = %d\n", iarg, narg);
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kappa = utils::numeric(FLERR, arg[iarg], false, lmp);
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if (kappa < 0) error->all(FLERR, "Variance constraint parameter must not be negative.");
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@ -185,7 +184,6 @@ FixSemiGrandCanonicalMC::FixSemiGrandCanonicalMC(LAMMPS *_lmp, int narg, char **
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utils::logmesg(lmp, " SGC - Target concentration of species {}: {}\n", i,
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targetConcentration[i]);
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}
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// printf("variance iarg = %d narg = %d\n", iarg, narg);
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} else if (strcmp(arg[iarg], "serial") == 0) {
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// Switch off second rejection.
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serialMode = true;
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@ -1032,7 +1030,6 @@ double FixSemiGrandCanonicalMC::computeEnergyChangeEatom(int flipAtom, int oldSp
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{
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double Eold, Enew, deltaE;
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// printf("In computeEnergyChangeEatom()\n");
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// Calculate old atomic energy of selected atom
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Eold = force->pair->compute_atomic_energy(flipAtom, neighborList);
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@ -1064,8 +1061,6 @@ double FixSemiGrandCanonicalMC::computeEnergyChangeEatom(int flipAtom, int oldSp
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deltaE = Enew - Eold;
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// printf("In computeEnergyChangeEatom() deltaE = %g\n", deltaE);
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return deltaE;
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}
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