A new formulation for S(k), the structure factor, has been obtained, treating the square-well potential as a perturbation on the hard-core in the mean spherical model approximation. The potential parameters have been varied not only to get a satisfactory peak height at the fitted temperature but also over a wide range of temperatures and densities. The agreement between the computed and experimental structure factor values shows that the representation of the attractive tail by a square-well potential yields a satisfactory method in understanding the structure of liquid argon
Liquid and dense gaseous argon has been simulated (using the Barker-Bobetic potential) by means of ...
The structure factors S k for simple liquid metals are calculated using a model ¯ uid composed of ha...
Theoretical thermodynamic models that accurately capture liquid behavior do so at the cost of ease o...
Recently, the well-known point molecular attractive pair term, r-6 only asymptotically correct, has ...
Applicability of the square well potential for liquid noble metals has been tested by calculating th...
Very simplified equations of state (EOS) are proposed for a system involving argon and consisting of...
The structure factors of several liquid metals have been calculated through the Baxter solution of t...
Applying the solution of the Percus-Yevic equation to a one component hard sphere system and using t...
one component plasma (OCP) and charged hard sphere (CHS) are employed to investigate the temperature...
Applying the solution of the Percus-Yevick equation to a one component system and using a screened p...
International audienceWe present a simulation of the liquid-vapor interface of argon with explicit i...
A thermodynamically consistent representation, in terms of the equation of state, is obtained for th...
The sixth and eighth frequency moments of the dynamical structure factor for a classical liquid are ...
The structure functions of several liquid metals have been calculated using the equation developed b...
Computer simulation studies of aqueous solutions of argon are performed from ambient to supercritica...
Liquid and dense gaseous argon has been simulated (using the Barker-Bobetic potential) by means of ...
The structure factors S k for simple liquid metals are calculated using a model ¯ uid composed of ha...
Theoretical thermodynamic models that accurately capture liquid behavior do so at the cost of ease o...
Recently, the well-known point molecular attractive pair term, r-6 only asymptotically correct, has ...
Applicability of the square well potential for liquid noble metals has been tested by calculating th...
Very simplified equations of state (EOS) are proposed for a system involving argon and consisting of...
The structure factors of several liquid metals have been calculated through the Baxter solution of t...
Applying the solution of the Percus-Yevic equation to a one component hard sphere system and using t...
one component plasma (OCP) and charged hard sphere (CHS) are employed to investigate the temperature...
Applying the solution of the Percus-Yevick equation to a one component system and using a screened p...
International audienceWe present a simulation of the liquid-vapor interface of argon with explicit i...
A thermodynamically consistent representation, in terms of the equation of state, is obtained for th...
The sixth and eighth frequency moments of the dynamical structure factor for a classical liquid are ...
The structure functions of several liquid metals have been calculated using the equation developed b...
Computer simulation studies of aqueous solutions of argon are performed from ambient to supercritica...
Liquid and dense gaseous argon has been simulated (using the Barker-Bobetic potential) by means of ...
The structure factors S k for simple liquid metals are calculated using a model ¯ uid composed of ha...
Theoretical thermodynamic models that accurately capture liquid behavior do so at the cost of ease o...