Modified Lennard-Jones model: Difference between revisions

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m (Typo confirmed.)
(Added a recent publication (Virial coefficients))
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<math>C_3 = -68.069 \epsilon</math> <ref>Note: due to a typographical error in the original ms, in Table I <math>C_3</math> appears to be positive. </ref>.
<math>C_3 = -68.069 \epsilon</math> <ref>Note: due to a typographical error in the original ms, in Table I <math>C_3</math> appears to be positive. </ref>.
<math>C_4 =  −0.0833111261\epsilon</math>  
<math>C_4 =  −0.0833111261\epsilon</math>  
and <math>C_5 = 0.746882273 \epsilon</math>.  
and <math>C_5 = 0.746882273 \epsilon</math>.
==Virial coefficients==
The [[Virial equation of state|virial coefficients]]  up to the seventh order have been calculated for the range of temperatures <math>k_BT/\epsilon = 0.3-70</math> <ref>[http://dx.doi.org/10.1063/1.4882896  M. V. Ushcats "Modified Lennard-Jones model: Virial coefficients to the 7th order", Journal of Chemical Physics '''140''' 234309 (2014)]</ref>.
==References==  
==References==  
<references/>
<references/>


[[category: models]]
[[category: models]]

Revision as of 13:42, 23 June 2014

The modified Lennard-Jones model is given by (Eq. 2 [1]):

where , and . These parametrs are chosen so that the function , as well as the first derivative, is continuous both at and . These parameters have recently been recalculated with greater precision by Asano and Fuchizaki [2], leading to , [3]. Failed to parse (syntax error): {\displaystyle C_4 = −0.0833111261\epsilon} and .

Virial coefficients

The virial coefficients up to the seventh order have been calculated for the range of temperatures [4].

References