This paper studies the influence of conservative phenomena at the mesoscopic scale that affect the behavior of macroscopic variables in chemical reactions, generally understood as purely dissipative processes and whose mathematical formulation is usually derived using macroscopic variables. It is shown that conservative phenomena at the mesoscopic scale can affect the entropy production by transiently ‘‘pulling away’’ the system from the thermodynamic equilibrium. Two case studies are presented to illustrate this fact: the first one is an isolated system with a single reaction including two different scenarios, a purely dissipative reaction; and a second one that considers the influence of conservative elements at the mesoscopic scale. The ...
The way chemical transformations are described by models based on microscopic reversibility does not...
A framework to calculate the rate constants of condensed phase chemical reactions of manybody system...
Origin of a dissipative structure in a chemical dynamic system: occurs under the following constrain...
Abstract The entropy production of thermodynamical systems with reversible (conservative) and irreve...
How do macroscopic systems react to imposed external forces? Attempts to answer this question by a g...
We review a coherent mesoscopic presentation of thermodynamics and fluctuations far from and near eq...
Gibbs' macroscopic chemical thermodynamics is one of the most important theories in chemistry. ...
The prediction of an atomistic system's macroscopic observables from microscopic physical characteri...
The analysis of the dynamical behavior of a system consisting of two isolated cavities, filled with ...
It is well known that a dissipative structure can only possibly turn out when the nonlinear system i...
In this Chapter, first we derive the macroscopic conservation laws of matter, momentum, energy and a...
We investigate the oscillatory reaction dynamics in a closed isothermal chemical system: the reversi...
We study a micro and macroscopic model for chemical reactions with feedback between reactions and te...
Most biochemical reactions in living cells are open systems interacting with environment through che...
A stochastic process is an essential tool for the investigation of the physical and life sciences at...
The way chemical transformations are described by models based on microscopic reversibility does not...
A framework to calculate the rate constants of condensed phase chemical reactions of manybody system...
Origin of a dissipative structure in a chemical dynamic system: occurs under the following constrain...
Abstract The entropy production of thermodynamical systems with reversible (conservative) and irreve...
How do macroscopic systems react to imposed external forces? Attempts to answer this question by a g...
We review a coherent mesoscopic presentation of thermodynamics and fluctuations far from and near eq...
Gibbs' macroscopic chemical thermodynamics is one of the most important theories in chemistry. ...
The prediction of an atomistic system's macroscopic observables from microscopic physical characteri...
The analysis of the dynamical behavior of a system consisting of two isolated cavities, filled with ...
It is well known that a dissipative structure can only possibly turn out when the nonlinear system i...
In this Chapter, first we derive the macroscopic conservation laws of matter, momentum, energy and a...
We investigate the oscillatory reaction dynamics in a closed isothermal chemical system: the reversi...
We study a micro and macroscopic model for chemical reactions with feedback between reactions and te...
Most biochemical reactions in living cells are open systems interacting with environment through che...
A stochastic process is an essential tool for the investigation of the physical and life sciences at...
The way chemical transformations are described by models based on microscopic reversibility does not...
A framework to calculate the rate constants of condensed phase chemical reactions of manybody system...
Origin of a dissipative structure in a chemical dynamic system: occurs under the following constrain...