Song and Mason equation of state for hard convex bodies: Difference between revisions

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(New page: The '''Song and Mason''' equation of state (EOS) for hard convex bodies is given by: ==References== #[http://dx.doi.org/10.1103/PhysRevA.41.3121 Yuhua Song and E. A. Mason "Equation o...)
 
 
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The '''Song and Mason''' equation of state (EOS) for hard convex bodies
The '''Song and Mason''' equation of state (EOS) for hard convex bodies
is given by:
is given by (Eq. 25 of Ref. 1):


:<math>\frac{p}{\rho kT} \approx 1 + \frac{\eta}{(1-\eta)^3}\left((1+3\alpha)-(2+3\alpha-3\alpha^2)\eta + \left(1+\left[\left(\frac{B_4}{v_0^3}\right)_{HS} -12\right] \alpha -7\alpha^2\right)\eta^2\right)</math>
where <math>\eta</math> is the [[packing fraction]], given by <math>\eta=\rho v_0</math> where <math>v_0</math> is the volume of one particle,  and
:<math>\alpha= \frac{RS}{3v_0}</math>
where <math>S</math>, the surface area,  and <math>R</math> the mean radius of curvature.
<math>\left(\frac{B_4}{v_0^3}\right)_{HS}</math> is the fourth [[Hard sphere: virial coefficients| virial coefficient]] for the [[hard sphere model]]. 
==References==
==References==
#[http://dx.doi.org/10.1103/PhysRevA.41.3121    Yuhua Song and E. A. Mason "Equation of state for a fluid of hard convex bodies in any number of dimensions", Physical Review A '''41''' pp. 3121 - 3124 (1990)]
#[http://dx.doi.org/10.1103/PhysRevA.41.3121    Yuhua Song and E. A. Mason "Equation of state for a fluid of hard convex bodies in any number of dimensions", Physical Review A '''41''' pp. 3121 - 3124 (1990)]
[[category: equations of state]]

Latest revision as of 14:55, 20 October 2009

The Song and Mason equation of state (EOS) for hard convex bodies is given by (Eq. 25 of Ref. 1):

where is the packing fraction, given by where is the volume of one particle, and

where , the surface area, and the mean radius of curvature. is the fourth virial coefficient for the hard sphere model.

References[edit]

  1. Yuhua Song and E. A. Mason "Equation of state for a fluid of hard convex bodies in any number of dimensions", Physical Review A 41 pp. 3121 - 3124 (1990)