git-svn-id: svn://svn.icms.temple.edu/lammps-ro/trunk@9663 f3b2605a-c512-4ea7-a41b-209d697bcdaa
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@ -66,6 +66,11 @@ should have 3 dof instead of 6 in 3d (or 2 instead of 3 in 2d). A
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uniaxial aspherical particle has two of its three shape parameters the
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uniaxial aspherical particle has two of its three shape parameters the
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same. If it does not rotate around the axis perpendicular to its
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same. If it does not rotate around the axis perpendicular to its
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circular cross section, then it should have 5 dof instead of 6 in 3d.
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circular cross section, then it should have 5 dof instead of 6 in 3d.
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The latter is the case for uniaxial ellipsoids in a <A HREF = "pair_gayberne.html">GayBerne
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model</A> since there is no induced torque around the
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optical axis. It will also be the case for biaxial ellipsoids when
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exactly two of the semiaxes have the same length and the corresponding
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relative well depths are equal.
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</P>
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</P>
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<P>The translational kinetic energy is computed the same as is described
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<P>The translational kinetic energy is computed the same as is described
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by the <A HREF = "compute_temp.html">compute temp</A> command. The rotational
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by the <A HREF = "compute_temp.html">compute temp</A> command. The rotational
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@ -58,6 +58,11 @@ should have 3 dof instead of 6 in 3d (or 2 instead of 3 in 2d). A
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uniaxial aspherical particle has two of its three shape parameters the
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uniaxial aspherical particle has two of its three shape parameters the
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same. If it does not rotate around the axis perpendicular to its
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same. If it does not rotate around the axis perpendicular to its
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circular cross section, then it should have 5 dof instead of 6 in 3d.
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circular cross section, then it should have 5 dof instead of 6 in 3d.
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The latter is the case for uniaxial ellipsoids in a "GayBerne
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model"_pair_gayberne.html since there is no induced torque around the
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optical axis. It will also be the case for biaxial ellipsoids when
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exactly two of the semiaxes have the same length and the corresponding
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relative well depths are equal.
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|
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The translational kinetic energy is computed the same as is described
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The translational kinetic energy is computed the same as is described
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by the "compute temp"_compute_temp.html command. The rotational
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by the "compute temp"_compute_temp.html command. The rotational
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