The coupling-parameter method, whereby an extra particle is progressively coupled to the rest of the particles, is applied to the sticky-hard-sphere fluid to obtain its equation of state in the so-called chemical-potential route (μ route). As a consistency test, the results for one-dimensional sticky particles are shown to be exact. Results corresponding to the three-dimensional case (Baxter's model) are derived within the Percus-Yevick approximation by using different prescriptions for the dependence of the interaction potential of the extra particle on the coupling parameter. The critical point and the coexistence curve of the gas-liquid phase transition are obtained in the μ route and compared with predictions from other thermodynamics r...
A general class of nonadditive sticky-hard-sphere binary mixtures, where small and large spheres rep...
The cubic-perturbed, hard-sphere equation of state proposed in 1980 by Ishikawa, Chung and Lu, has b...
Two methods for computing the entropy of hard-sphere systems using a spherical tether model are expl...
The chemical potentials of multicomponent fluids are derived in terms of the pair correlation funct...
The phase diagrams of systems made up of hard spheres interacting with attractive potentials of the ...
The thermodynamic properties of the dipolar hard-sphere fluid are studied using theory and simulatio...
A simple hard-sphere equation of state is proposed. This hard-sphere equation is a ratio of second-o...
We study the polydisperse Baxter model of sticky hard spheres (SHS) in the modified mean spherical a...
We discuss structural and thermodynamical properties of Baxter's adhesive hard sphere model within ...
The objective of this paper is to investigate the convergence of coupling-parameter expansion-based ...
The compressibility equation of state (EOS) for a multi-component sticky hard sphere model alternati...
Using event-driven molecular dynamics simulations, we study a three-dimensional one-component system...
Studies on phase equilibria data behavior of pure substances are motivation to the researchers due t...
The new mathematical framework based on the free energy of pure classical fluids presented by Rohrma...
Typescript (photocopy).Equation of state calculations are used by engineers in all phases of chemica...
A general class of nonadditive sticky-hard-sphere binary mixtures, where small and large spheres rep...
The cubic-perturbed, hard-sphere equation of state proposed in 1980 by Ishikawa, Chung and Lu, has b...
Two methods for computing the entropy of hard-sphere systems using a spherical tether model are expl...
The chemical potentials of multicomponent fluids are derived in terms of the pair correlation funct...
The phase diagrams of systems made up of hard spheres interacting with attractive potentials of the ...
The thermodynamic properties of the dipolar hard-sphere fluid are studied using theory and simulatio...
A simple hard-sphere equation of state is proposed. This hard-sphere equation is a ratio of second-o...
We study the polydisperse Baxter model of sticky hard spheres (SHS) in the modified mean spherical a...
We discuss structural and thermodynamical properties of Baxter's adhesive hard sphere model within ...
The objective of this paper is to investigate the convergence of coupling-parameter expansion-based ...
The compressibility equation of state (EOS) for a multi-component sticky hard sphere model alternati...
Using event-driven molecular dynamics simulations, we study a three-dimensional one-component system...
Studies on phase equilibria data behavior of pure substances are motivation to the researchers due t...
The new mathematical framework based on the free energy of pure classical fluids presented by Rohrma...
Typescript (photocopy).Equation of state calculations are used by engineers in all phases of chemica...
A general class of nonadditive sticky-hard-sphere binary mixtures, where small and large spheres rep...
The cubic-perturbed, hard-sphere equation of state proposed in 1980 by Ishikawa, Chung and Lu, has b...
Two methods for computing the entropy of hard-sphere systems using a spherical tether model are expl...