Maximum energy dissipation principle is employed to nonlinear chemical thermodynamics in terms of distance variable (general displacement) from the global equilibrium, applyong the optimal control interpretation to develop a variational formulation. The cost-like functional was chosen to support the suggestion that such a formulation corresponds to the maximum energy dissipation principle. Using this approach, the variational framework was proposed for a nonlinear chemical thermodynamics, including a general cooperative kinetics model. The formulation is in good agreement with standatd linear nonequilibrium chemical thermodynamics
Conselho Nacional de Desenvolvimento Científico e Tecnológico (CNPq)Coordenação de Aperfeiçoamento d...
International audiencePart I of this paper introduced a Lagrangian variational formulation for noneq...
We define a nonlinear thermodynamical formalism which translates into dynamical system theory the st...
The maximum energy dissipation related to maximum entropy production hypothesis has been revised ab...
We compare the collective phenomena in physics and cooperative phenomena in biology/chemistry in ter...
This book explores the thermodynamics of non-equilibrium processes in materials. It develops a gener...
This paper studies a mathematical formalism of nonequilibrium thermodynamics for chemical reaction m...
International audienceIn this paper, we present a Lagrangian variational formulation for nonequilibr...
Chemical equilibrium thermodynamics has found numerous application areas in diverse fields such as p...
AbstractA thermodynamically consistent construction yields evolution equations for the non-equilibri...
Variational principles play a fundamental role in deriving the evolution equations of physics. They ...
The fundamental optimization principle for non-equilibrium thermodynamics is given. The second entro...
Fundação de Amparo à Pesquisa do Estado de São Paulo (FAPESP)The stability of chemical systems is di...
Many nonequilibrium problems in thermodynamics, information theory, economics, control theory and ot...
This chapter provides a general and self-contained overview of the variational approach to nonlinear...
Conselho Nacional de Desenvolvimento Científico e Tecnológico (CNPq)Coordenação de Aperfeiçoamento d...
International audiencePart I of this paper introduced a Lagrangian variational formulation for noneq...
We define a nonlinear thermodynamical formalism which translates into dynamical system theory the st...
The maximum energy dissipation related to maximum entropy production hypothesis has been revised ab...
We compare the collective phenomena in physics and cooperative phenomena in biology/chemistry in ter...
This book explores the thermodynamics of non-equilibrium processes in materials. It develops a gener...
This paper studies a mathematical formalism of nonequilibrium thermodynamics for chemical reaction m...
International audienceIn this paper, we present a Lagrangian variational formulation for nonequilibr...
Chemical equilibrium thermodynamics has found numerous application areas in diverse fields such as p...
AbstractA thermodynamically consistent construction yields evolution equations for the non-equilibri...
Variational principles play a fundamental role in deriving the evolution equations of physics. They ...
The fundamental optimization principle for non-equilibrium thermodynamics is given. The second entro...
Fundação de Amparo à Pesquisa do Estado de São Paulo (FAPESP)The stability of chemical systems is di...
Many nonequilibrium problems in thermodynamics, information theory, economics, control theory and ot...
This chapter provides a general and self-contained overview of the variational approach to nonlinear...
Conselho Nacional de Desenvolvimento Científico e Tecnológico (CNPq)Coordenação de Aperfeiçoamento d...
International audiencePart I of this paper introduced a Lagrangian variational formulation for noneq...
We define a nonlinear thermodynamical formalism which translates into dynamical system theory the st...