In this paper, we formulate the first law of global thermodynamics for stationary states of the binary ideal gas mixture subjected to heat flow. We map the non-uniform system onto the uniform one and show that the internal energy U(S*,V,N1,N2,f1*,f2*) is the function of the following parameters of state: a non-equilibrium entropy S*, volume V, number of particles of the first component, N1, number of particles of the second component N2 and the renormalized degrees of freedom. The parameters f1*,f2*, N1,N2 satisfy the relation (N1/(N1+N2))f1*/f1+(N2/(N1+N2))f2*/f2=1 (f1 and f2 are the degrees of freedom for each component respectively). Thus, only 5 parameters of state describe the non-equilibrium state of the binary mixture in the heat flo...
The thermodynamics of irreversible processes, based on the O n s a g e r reciprocal relations, is ap...
This work is devoted to the consistent modeling of a three-phase mixture of a gas, a liquid and its ...
This paper presents two expressions define the ideal gaseous mixture entropy via its components entr...
We formulate the first law of global thermodynamics for stationary states of the ideal gas in the gr...
There is a long-standing question as to whether and to what extent it is possible to describe nonequ...
There is a long-standing question as to whether and to what extent it is possible to describe nonequ...
Equilibrium thermodynamics describes the energy exchange of a body with its environment. Here, we de...
Equilibrium thermodynamics describes the energy exchange of a body with its environment. Here, we de...
A dynamical description for fluid binary mixtures with variable temperature and concentration gradie...
A dynamical description for fluid binary mixtures with variable temperature and concentration gradie...
A dynamical description for fluid binary mixtures with variable temperature and concentration gradie...
The understanding of irreversible phenomena in the world around us is of great importance -- not onl...
This paper treats the nonequilibrium processes in mixtures of fluids under the assumption that each ...
We consider viscous, heat-conducting mixtures of molecularly miscible chemical species forming a flu...
This paper treats the nonequilibrium processes in mixtures of fluids under the assumption that each ...
The thermodynamics of irreversible processes, based on the O n s a g e r reciprocal relations, is ap...
This work is devoted to the consistent modeling of a three-phase mixture of a gas, a liquid and its ...
This paper presents two expressions define the ideal gaseous mixture entropy via its components entr...
We formulate the first law of global thermodynamics for stationary states of the ideal gas in the gr...
There is a long-standing question as to whether and to what extent it is possible to describe nonequ...
There is a long-standing question as to whether and to what extent it is possible to describe nonequ...
Equilibrium thermodynamics describes the energy exchange of a body with its environment. Here, we de...
Equilibrium thermodynamics describes the energy exchange of a body with its environment. Here, we de...
A dynamical description for fluid binary mixtures with variable temperature and concentration gradie...
A dynamical description for fluid binary mixtures with variable temperature and concentration gradie...
A dynamical description for fluid binary mixtures with variable temperature and concentration gradie...
The understanding of irreversible phenomena in the world around us is of great importance -- not onl...
This paper treats the nonequilibrium processes in mixtures of fluids under the assumption that each ...
We consider viscous, heat-conducting mixtures of molecularly miscible chemical species forming a flu...
This paper treats the nonequilibrium processes in mixtures of fluids under the assumption that each ...
The thermodynamics of irreversible processes, based on the O n s a g e r reciprocal relations, is ap...
This work is devoted to the consistent modeling of a three-phase mixture of a gas, a liquid and its ...
This paper presents two expressions define the ideal gaseous mixture entropy via its components entr...