mirror of https://github.com/lammps/lammps.git
git-svn-id: svn://svn.icms.temple.edu/lammps-ro/trunk@1791 f3b2605a-c512-4ea7-a41b-209d697bcdaa
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@ -113,6 +113,10 @@ that the box dimension remains unchanged. For a 2d simulation the z
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pressure components must be specified as NULL when using style
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<I>aniso</I>.
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</P>
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<P>For styles <I>xy</I> and <I>yz</I> and <I>xz</I>, the starting and stopping pressures
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must be the same for the two coupled dimensions and cannot be
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specified as NULL.
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</P>
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<P>In some cases (e.g. for solids) the pressure (volume) and/or
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temperature of the system can oscillate undesirably when a Nose/Hoover
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barostat is applied. The optional <I>drag</I> keyword will damp these
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@ -104,6 +104,10 @@ that the box dimension remains unchanged. For a 2d simulation the z
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pressure components must be specified as NULL when using style
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{aniso}.
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For styles {xy} and {yz} and {xz}, the starting and stopping pressures
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must be the same for the two coupled dimensions and cannot be
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specified as NULL.
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In some cases (e.g. for solids) the pressure (volume) and/or
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temperature of the system can oscillate undesirably when a Nose/Hoover
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barostat is applied. The optional {drag} keyword will damp these
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@ -124,6 +124,10 @@ that the box dimension remains unchanged. For a 2d simulation the z
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pressure components must be specified as NULL when using style
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<I>aniso</I>.
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</P>
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<P>For styles <I>xy</I> and <I>yz</I> and <I>xz</I>, the starting and stopping pressures
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must be the same for the two coupled dimensions and cannot be
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specified as NULL.
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</P>
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<P>In some cases (e.g. for solids) the pressure (volume) and/or
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temperature of the system can oscillate undesirably when a Nose/Hoover
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barostat and thermostat is applied. The optional <I>drag</I> keyword will
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|
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@ -113,6 +113,10 @@ that the box dimension remains unchanged. For a 2d simulation the z
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pressure components must be specified as NULL when using style
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{aniso}.
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For styles {xy} and {yz} and {xz}, the starting and stopping pressures
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must be the same for the two coupled dimensions and cannot be
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specified as NULL.
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In some cases (e.g. for solids) the pressure (volume) and/or
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temperature of the system can oscillate undesirably when a Nose/Hoover
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barostat and thermostat is applied. The optional {drag} keyword will
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|
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@ -111,6 +111,10 @@ that the box dimension remains unchanged. For a 2d simulation the z
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pressure components must be specified as NULL when using style
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<I>aniso</I>.
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</P>
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<P>For styles <I>xy</I> and <I>yz</I> and <I>xz</I>, the starting and stopping pressures
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must be the same for the two coupled dimensions and cannot be
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specified as NULL.
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</P>
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<P>In some cases (e.g. for solids) the pressure (volume) and/or
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temperature of the system can oscillate undesirably when a Nose/Hoover
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barostat and thermostat is applied. The optional <I>drag</I> keyword will
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@ -100,6 +100,10 @@ that the box dimension remains unchanged. For a 2d simulation the z
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pressure components must be specified as NULL when using style
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{aniso}.
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For styles {xy} and {yz} and {xz}, the starting and stopping pressures
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must be the same for the two coupled dimensions and cannot be
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specified as NULL.
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In some cases (e.g. for solids) the pressure (volume) and/or
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temperature of the system can oscillate undesirably when a Nose/Hoover
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barostat and thermostat is applied. The optional {drag} keyword will
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@ -113,6 +113,10 @@ that the box dimension remains unchanged. For a 2d simulation the z
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pressure components must be specified as NULL when using style
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<I>aniso</I>.
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</P>
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<P>For styles <I>xy</I> and <I>yz</I> and <I>xz</I>, the starting and stopping pressures
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must be the same for the two coupled dimensions and cannot be
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specified as NULL.
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</P>
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<P>In some cases (e.g. for solids) the pressure (volume) and/or
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temperature of the system can oscillate undesirably when a Nose/Hoover
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barostat and thermostat is applied. The optional <I>drag</I> keyword will
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@ -102,6 +102,10 @@ that the box dimension remains unchanged. For a 2d simulation the z
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pressure components must be specified as NULL when using style
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{aniso}.
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For styles {xy} and {yz} and {xz}, the starting and stopping pressures
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must be the same for the two coupled dimensions and cannot be
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specified as NULL.
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In some cases (e.g. for solids) the pressure (volume) and/or
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temperature of the system can oscillate undesirably when a Nose/Hoover
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barostat and thermostat is applied. The optional {drag} keyword will
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@ -105,6 +105,10 @@ that the box dimension remains unchanged. For a 2d simulation the z
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pressure components must be specified as NULL when using style
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<I>aniso</I>.
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</P>
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<P>For styles <I>xy</I> and <I>yz</I> and <I>xz</I>, the starting and stopping pressures
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must be the same for the two coupled dimensions and cannot be
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specified as NULL.
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</P>
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<P>In some cases (e.g. for solids) the pressure (volume) and/or
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temperature of the system can oscillate undesirably when a Nose/Hoover
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barostat is applied. The optional <I>drag</I> keyword will damp these
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@ -96,6 +96,10 @@ that the box dimension remains unchanged. For a 2d simulation the z
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pressure components must be specified as NULL when using style
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{aniso}.
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For styles {xy} and {yz} and {xz}, the starting and stopping pressures
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must be the same for the two coupled dimensions and cannot be
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specified as NULL.
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In some cases (e.g. for solids) the pressure (volume) and/or
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temperature of the system can oscillate undesirably when a Nose/Hoover
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barostat is applied. The optional {drag} keyword will damp these
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