In the present paper, we extend the method described in paper I [D. Bertolini and A. Tani, preceding paper, Phys. Rev. E 83, 031201 (2011)] to molecular liquids, which allows us to solve the exact kinetic equation proposed by de Schepper et al. [Phys. Rev. A 38, 271 (1988)] without approximations. In particular, generalized thermodynamic properties (enthalpy, specific heat, and thermal expansion coefficient) and transport properties (longitudinal viscosity, thermal conductivity) have been calculated for three liquids of increasing complexity, namely dimethyl sulfoxide, hydrogen fluoride, and SPC/E water. All results have been obtained by the molecular formalism as well as the atomic one, corrected for intramolecular correlations that are du...
International audienceMolecular thermodynamics is essentially the application of statistical mechani...
The existing kinetic theory of gases is based on an analytical approach that becomes intractable for...
Accurate knowledge and control of thermal conductivities is central for the efficient design of heat...
In the present paper, we extend the method described in paper I [D. Bertolini and A. Tani, preceding...
We propose a method by which the generalized transport properties and coefficients at all wavelength...
The knowledge of transport properties is crucial to design new devices in electronic and biotechnolo...
Equilibrium molecular dynamics simulations have been carried out in the microcanonical ensemble at 3...
The transport theory of liquids presented by Prigogine, Nicolis, and Misguich (PNM) is compared to e...
The liquid state is possibly the most difficult and intriguing state of matter to model. Organic liq...
The liquid state is possibly the most difficult and intriguing state of matter to model. Organic liq...
The liquid state is possibly the most difficult and intriguing state of matter to model. Organic liq...
The liquid state is possibly the most difficult and intriguing state of matter to model. Organic liq...
Historically, reliable data for the thermophysical properties of fluids could only be obtained from ...
Accurate knowledge and control of thermal conductivities is central for the efficient design of heat...
The liquid state is possibly the most difficult and intriguing stete of matter to model. Organic liq...
International audienceMolecular thermodynamics is essentially the application of statistical mechani...
The existing kinetic theory of gases is based on an analytical approach that becomes intractable for...
Accurate knowledge and control of thermal conductivities is central for the efficient design of heat...
In the present paper, we extend the method described in paper I [D. Bertolini and A. Tani, preceding...
We propose a method by which the generalized transport properties and coefficients at all wavelength...
The knowledge of transport properties is crucial to design new devices in electronic and biotechnolo...
Equilibrium molecular dynamics simulations have been carried out in the microcanonical ensemble at 3...
The transport theory of liquids presented by Prigogine, Nicolis, and Misguich (PNM) is compared to e...
The liquid state is possibly the most difficult and intriguing state of matter to model. Organic liq...
The liquid state is possibly the most difficult and intriguing state of matter to model. Organic liq...
The liquid state is possibly the most difficult and intriguing state of matter to model. Organic liq...
The liquid state is possibly the most difficult and intriguing state of matter to model. Organic liq...
Historically, reliable data for the thermophysical properties of fluids could only be obtained from ...
Accurate knowledge and control of thermal conductivities is central for the efficient design of heat...
The liquid state is possibly the most difficult and intriguing stete of matter to model. Organic liq...
International audienceMolecular thermodynamics is essentially the application of statistical mechani...
The existing kinetic theory of gases is based on an analytical approach that becomes intractable for...
Accurate knowledge and control of thermal conductivities is central for the efficient design of heat...