git-svn-id: svn://svn.icms.temple.edu/lammps-ro/trunk@2764 f3b2605a-c512-4ea7-a41b-209d697bcdaa
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@ -52,7 +52,7 @@ results from a unitless LJ simulation into physical quantities.
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<LI>torque = epsilon, where t* = t / epsilon
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<LI>temperature = reduced LJ temperature, where T* = T Kb / epsilon
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<LI>pressure = reduced LJ pressure, where P* = P sigma^3 / epsilon
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<LI>viscosity = reduced LJ viscosity, where eta* = eta sigma^3 / epsilon / tau
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<LI>dynamic viscosity = reduced LJ viscosity, where eta* = eta sigma^3 / epsilon / tau
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<LI>charge = reduced LJ charge, where q* = q / (4 pi perm0 sigma epsilon)^1/2
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<LI>dipole = reduced LJ dipole, moment where *mu = mu / (4 pi perm0 sigma^3 epsilon)^1/2
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<LI>electric field = force/charge, where E* = E (4 pi perm0 sigma epsilon)^1/2 sigma / epsilon
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@ -68,7 +68,7 @@ results from a unitless LJ simulation into physical quantities.
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<LI>torque = Kcal/mole
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<LI>temperature = degrees K
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<LI>pressure = atmospheres
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<LI>viscosity = Poise
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<LI>dynamic viscosity = Poise
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<LI>charge = multiple of electron charge (+1.0 is a proton)
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<LI>dipole = charge*Angstroms
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<LI>electric field = volts/Angstrom
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@ -84,7 +84,7 @@ results from a unitless LJ simulation into physical quantities.
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<LI>torque = eV
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<LI>temperature = degrees K
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<LI>pressure = bars
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<LI>viscosity = Poise
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<LI>dynamic viscosity = Poise
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<LI>charge = multiple of electron charge (+1.0 is a proton)
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<LI>dipole = charge*Angstroms
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<LI>electric field = volts/Angstrom
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@ -100,7 +100,7 @@ results from a unitless LJ simulation into physical quantities.
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<LI>torque = Newton-meters
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<LI>temperature = degrees K
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<LI>pressure = Pascals
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<LI>viscosity = Pascal*second
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<LI>dynamic viscosity = Pascal*second
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<LI>charge = Coulombs
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<LI>dipole = Coulombs*meters
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<LI>electric field = volts/meter
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@ -116,7 +116,7 @@ results from a unitless LJ simulation into physical quantities.
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<LI>torque = dyne-centimeters
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<LI>temperature = degrees K
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<LI>pressure = dyne/cm^2 or barye = 1.0e-6 bars
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<LI>viscosity = Poise
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<LI>dynamic viscosity = Poise
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<LI>charge = statcoulombs or esu
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<LI>dipole = statcoul-cm = 10^18 debye
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<LI>electric field = statvolt/cm or dyne/esu
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