Abstract
Vapour-liquid equilibrium properties for both three- and two-dimensional Lennard-Jones fluids were obtained using simple cubic-in-density equations of state proposed by the authors. Results were compared with those obtained by other workers from computer simulations and also with results given by other more complex semi-theoretical or semi-empirical equations of state. In the three-dimensional case good agreement is found for all properties and all temperatures. In the two-dimensional case only the coexistence densities were compared, producing good agreement for low temperatures only. The present work is the first to give numerical data for the vapour-liquid equilibrium properties of Lennard-Jones fluids calculated from equations of state. © CSIRO 1999.
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CITATION STYLE
Mulero, A. (1999). Vapour-liquid equilibrium properties for two- and three-dimensional lennard-jones fluids from equations of state. Australian Journal of Physics, 52(1), 101–115. https://doi.org/10.1071/P98051
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