This paper presents a nonequilibrium thermodynamic model for the relaxation of a local, isolated system in nonequilibrium using the principle of steepest entropy ascent (SEA), which can be expressed as a variational principle in thermodynamic state space. The model is able to arrive at the Onsager relations for such a system. Since no assumption of local equilibrium is made, the conjugate fluxes and forces are intrinsic to the subspaces of the system's state space and are defined using the concepts of hypoequilibrium state and nonequilibrium intensive properties, which describe the nonmutual equilibrium status between subspaces of the thermodynamic state space. The Onsager relations are shown to be a thermodynamic kinematic feature of the s...
On the basis of just the microscopic definition of thermodynamic entropy and the definition of the r...
A Hamiltonian-based model of many harmonically interacting massive particles that are subject to lin...
On the basis of just the microscopic definition of thermodynamic entropy and the definition of the r...
This paper presents a nonequilibrium, first-principles, thermodynamic-ensemble-based model for the r...
By suitable reformulations, we cast the mathematical frameworks of several well-known different appr...
Conventional first-principle approaches for studying nonequilibrium processes depend on the mechani...
Conventional first principle approaches for studying nonequilibrium or far-from-equilibrium processe...
We derive thermodynamically consistent models of reaction-diffusion equations coupled to a heat equa...
A class of statistical systems is considered where different degrees of freedom have well-separated ...
We show that when the thermodynamic fluxes are included as independent thermodynamic state variables...
We derive thermodynamically consistent models of reaction-diffusion equations coupled to a heat equa...
This paper presents a study of the nonequilibrium relaxation process of chemically reactive systems ...
An advanced nonequilibrium thermodynamic model for electron and phonon transport is formulated based...
This paper reviews a new theory for non-equilibrium statistical mechanics. This gives the non-equili...
Conventional first principle approaches for studying nonequilibrium or far-from-equilibrium processe...
On the basis of just the microscopic definition of thermodynamic entropy and the definition of the r...
A Hamiltonian-based model of many harmonically interacting massive particles that are subject to lin...
On the basis of just the microscopic definition of thermodynamic entropy and the definition of the r...
This paper presents a nonequilibrium, first-principles, thermodynamic-ensemble-based model for the r...
By suitable reformulations, we cast the mathematical frameworks of several well-known different appr...
Conventional first-principle approaches for studying nonequilibrium processes depend on the mechani...
Conventional first principle approaches for studying nonequilibrium or far-from-equilibrium processe...
We derive thermodynamically consistent models of reaction-diffusion equations coupled to a heat equa...
A class of statistical systems is considered where different degrees of freedom have well-separated ...
We show that when the thermodynamic fluxes are included as independent thermodynamic state variables...
We derive thermodynamically consistent models of reaction-diffusion equations coupled to a heat equa...
This paper presents a study of the nonequilibrium relaxation process of chemically reactive systems ...
An advanced nonequilibrium thermodynamic model for electron and phonon transport is formulated based...
This paper reviews a new theory for non-equilibrium statistical mechanics. This gives the non-equili...
Conventional first principle approaches for studying nonequilibrium or far-from-equilibrium processe...
On the basis of just the microscopic definition of thermodynamic entropy and the definition of the r...
A Hamiltonian-based model of many harmonically interacting massive particles that are subject to lin...
On the basis of just the microscopic definition of thermodynamic entropy and the definition of the r...