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Analysis of Classical Statistical Mechanics by Means of Collective Coordinates

Physical Review · 1958 · Vol. 110(1) · pp. 1–13
J. K. PercusGeorge J. Yevick

Abstract

The three-dimensional classical many-body system is approximated by the use of collective coordinates, through the assumed knowledge of two-body correlation functions. The resulting approximate statistical state is used to obtain the two-body correlation function. Thus, a self-consistent formulation is available for determining the correlation function. Then, the self-consistent integral equation is solved in virial expansion, and the thermodynamic quantities of the system thereby ascertained. The first three virial coefficients are exactly reproduced, while the fourth is nearly correct, as evidenced by numerical results for the case of hard spheres.

Advanced Thermodynamics and Statistical MechanicsTheoretical and Computational PhysicsStatistical Mechanics and EntropyVirial coefficientVirial expansionStatistical mechanicsVirial theoremRadial distribution functionCorrelation function (quantum field theory)Ornstein–Zernike equationPhysicsHard spheresStatistical physics
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References
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Journal of Chemical Education · 1955 · 3,938 citations
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