Heat capacity extrema: Solution of the Ornstein–Zernike equation in the Percus–Yevick approximation for the truncated Lennard‐Jones fluid
Author:
Publisher
AIP Publishing
Subject
Physical and Theoretical Chemistry,General Physics and Astronomy
Link
http://aip.scitation.org/doi/pdf/10.1063/1.466451
Reference6 articles.
1. Equation of State of Dense Fluids. VII. PY Theory of CV Extrema and Comparison with Experiment
2. Renormalization-group analysis of heat-capacity critical amplitudes
3. Heat capacity extrema: Monte Carlo simulations for the truncated Lennard-Jones fluid
4. Solutions to the Percus‐Yevick Equation
5. Equation of State of Dense Fluids. VIII. Comparison of the Internal Pressure from the PY Theory and the Lennard‐Jones (6–12) Potential with Experiment
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1. Riemannian geometry study of vapor-liquid phase equilibria and supercritical behavior of the Lennard-Jones fluid;Physical Review E;2012-03-05
2. Evolution of the liquid-vapor coexistence of the hard-core Yukawa fluid as a function of the interaction range;The Journal of Chemical Physics;2010-04-28
3. Cv extrema on isotherms for simple fluids and why they exist;The Journal of Chemical Physics;1997-06-22
4. Heat capacity extrema on isotherms in one‐dimension: Two particles interacting with the truncated Lennard‐Jones potential in the canonical ensemble;The Journal of Chemical Physics;1996-09
5. The isochoric-, isobaric- and saturation-heat capacities of the Lennard-Jones fluid from equations of state and Monte Carlo simulations;Fluid Phase Equilibria;1996-05
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