git-svn-id: svn://svn.icms.temple.edu/lammps-ro/trunk@4863 f3b2605a-c512-4ea7-a41b-209d697bcdaa
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@ -22,7 +22,7 @@
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<P><B>Examples:</B>
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<P><B>Examples:</B>
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</P>
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</P>
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<PRE>pair_style reax
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<PRE>pair_style reax
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pair_style reax 10.0 1.0e-5
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pair_style reax 10.0 0 1.0e-5
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pair_coeff * * ffield.reax 3 1 2 2
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pair_coeff * * ffield.reax 3 1 2 2
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pair_coeff * * ffield.reax 3 NULL NULL 3
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pair_coeff * * ffield.reax 3 NULL NULL 3
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</PRE>
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</PRE>
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@ -131,7 +131,7 @@ results from a unitless LJ simulation into physical quantities.
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<UL><LI>mass = atomic mass units
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<UL><LI>mass = atomic mass units
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<LI>distance = Bohr
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<LI>distance = Bohr
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<LI>time = femtoseconds
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<LI>time = femtoseconds
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<LI>energy = Kcal/mole
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<LI>energy = Hartrees
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<LI>velocity = Bohr/atomic time units [1.03275e-15 seconds]
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<LI>velocity = Bohr/atomic time units [1.03275e-15 seconds]
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<LI>force = Hartrees*Bohr
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<LI>force = Hartrees*Bohr
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<LI>temperature = degrees K
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<LI>temperature = degrees K
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@ -128,7 +128,7 @@ For style {electron}, these are the units:
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mass = atomic mass units
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mass = atomic mass units
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distance = Bohr
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distance = Bohr
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time = femtoseconds
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time = femtoseconds
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energy = Kcal/mole
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energy = Hartrees
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velocity = Bohr/atomic time units \[1.03275e-15 seconds\]
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velocity = Bohr/atomic time units \[1.03275e-15 seconds\]
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force = Hartrees*Bohr
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force = Hartrees*Bohr
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temperature = degrees K
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temperature = degrees K
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