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Maximum entropy production principle in physics, chemistry and biology

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TLDR
The maximum entropy production principle (MEPP) as discussed by the authors was proposed to maximize the entropy production during nonequilibrium processes, and it has been applied in a wide range of applications.
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This article is published in Physics Reports.The article was published on 2006-04-01. It has received 781 citations till now. The article focuses on the topics: Maximum entropy thermodynamics & Entropy (arrow of time).

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Microstructures and properties of high-entropy alloys

TL;DR: The concept of high entropy introduces a new path of developing advanced materials with unique properties, which cannot be achieved by the conventional micro-alloying approach based on only one dominant element as mentioned in this paper.
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Non-equilibrium statistical mechanics: from a paradigmatic model to biological transport

TL;DR: The totally asymmetric exclusion process as discussed by the authors is regarded as a paradigmatic model for non-equilibrium statistical mechanics, much like the role the Ising model played for equilibrium statistical mechanics.
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Non-equilibrium statistical mechanics: From a paradigmatic model to biological transport

TL;DR: This work provides detailed mathematical analyses of a one-dimensional continuous-time lattice gas, the totally asymmetric exclusion process, regarded as a paradigmatic model for NESM, much like the role the Ising model played for equilibrium statistical mechanics.
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Relativistic fluid dynamics: physics for many different scales

TL;DR: The mathematical and theoretical physics underpinnings of the relativistic (multiple) fluid model are discussed, including the variational principle approach championed by Brandon Carter and his collaborators, in which a crucial element is to distinguish the momenta that are conjugate to particle number density currents.
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Probing the limits of metal plasticity with molecular dynamics simulations

TL;DR: The goal is to quantify the conditions under which the limits of dislocation-mediated plasticity are reached and to understand what happens to the metal beyond any such limit, and to address the complexity of crystal plasticity processes on the length scales and timescales that are examined.
References
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Journal ArticleDOI

A mathematical theory of communication

TL;DR: This final installment of the paper considers the case where the signals or the messages or both are continuously variable, in contrast with the discrete nature assumed until now.
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The mathematical theory of communication

TL;DR: The Mathematical Theory of Communication (MTOC) as discussed by the authors was originally published as a paper on communication theory more than fifty years ago and has since gone through four hardcover and sixteen paperback printings.
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Information Theory and Statistical Mechanics. II

TL;DR: In this article, the authors consider statistical mechanics as a form of statistical inference rather than as a physical theory, and show that the usual computational rules, starting with the determination of the partition function, are an immediate consequence of the maximum-entropy principle.
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Molecular theory of gases and liquids

TL;DR: Molecular theory of gases and liquids as mentioned in this paper, molecular theory of gas and liquids, Molecular theory of liquid and gas, molecular theories of gases, and liquid theory of liquids, مرکز