Abstract
Following Attard, we obtain a second-order Percus–Yevick equation from the theory of inhomogeneous fluids. Although we calculate the radial distribution function and thermodynamic functions, our main interest is in the calculation of the bridge function, a part of the radial distribution function either not included or simply approximated in the usual theories. A comparison is made with simulation results for the bridge function, correlation functions, and thermodynamic functions for the Lennard-Jones fluid with good results. A comparison is also made with recent binodal chain approximation results.
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Dates
Type | When |
---|---|
Created | 23 years ago (July 26, 2002, 8:39 a.m.) |
Deposited | 1 year, 6 months ago (Feb. 6, 2024, 6:47 a.m.) |
Indexed | 1 year, 6 months ago (Feb. 10, 2024, 11:51 a.m.) |
Issued | 29 years, 5 months ago (Feb. 22, 1996) |
Published | 29 years, 5 months ago (Feb. 22, 1996) |
Published Print | 29 years, 5 months ago (Feb. 22, 1996) |
@article{Henderson_1996, title={The bridge function of a Lennard-Jones fluid calculated from a second-order Percus–Yevick equation}, volume={104}, ISSN={1089-7690}, url={http://dx.doi.org/10.1063/1.471118}, DOI={10.1063/1.471118}, number={8}, journal={The Journal of Chemical Physics}, publisher={AIP Publishing}, author={Henderson, Douglas and Sokol/owski, Stefan}, year={1996}, month=feb, pages={2971–2975} }