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Titlebook: Beyond the Second Law; Entropy Production a Roderick C. Dewar,Charles H. Lineweaver,Klaus Rege Book 2014 Springer-Verlag Berlin Heidelberg

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發(fā)表于 2025-3-21 17:56:10 | 只看該作者 |倒序瀏覽 |閱讀模式
期刊全稱Beyond the Second Law
期刊簡稱Entropy Production a
影響因子2023Roderick C. Dewar,Charles H. Lineweaver,Klaus Rege
視頻videohttp://file.papertrans.cn/186/185359/185359.mp4
發(fā)行地址An up-to-date, coherent and balanced account of the study of entropy production in non-equilibrium systems.With particular emphasis on the theoretical basis of MaxEP, its relation to other non-equilib
學(xué)科分類Understanding Complex Systems
圖書封面Titlebook: Beyond the Second Law; Entropy Production a Roderick C. Dewar,Charles H. Lineweaver,Klaus Rege Book 2014 Springer-Verlag Berlin Heidelberg
影響因子The Second Law, a cornerstone of thermodynamics, governs the average direction of dissipative, non-equilibrium processes. But it says nothing about their actual rates or the probability of fluctuations about the average. This interdisciplinary book, written and peer-reviewed by international experts, presents recent advances in the search for new non-equilibrium principles beyond the Second Law, and their applications to a wide range of systems across physics, chemistry and biology. Beyond The Second Law brings together traditionally isolated areas of non-equilibrium research and highlights potentially fruitful connections between them, with entropy production playing the unifying role. Key theoretical concepts include the Maximum Entropy Production principle, the Fluctuation Theorem, and the Maximum Entropy method of statistical inference. Applications of these principles are illustrated in such diverse fields as climatology, cosmology, crystal growth morphology, Earth system science, environmental physics, evolutionary biology and technology, fluid turbulence, microbial biogeochemistry, plasma physics, and radiative transport, using a wide variety of analytical and experimental t
Pindex Book 2014
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Fluctuations, Trajectory Entropy and Ziegler’s Maximum Entropy Production PrincipleThis chapter discusses two current interpretations of the maximum entropy production principle—as a physical principle and as an inference procedure. A simple model of relaxation of an isolated system towards equilibrium is considered for this purpose.
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Roderick C. Dewar,Charles H. Lineweaver,Klaus RegeAn up-to-date, coherent and balanced account of the study of entropy production in non-equilibrium systems.With particular emphasis on the theoretical basis of MaxEP, its relation to other non-equilib
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https://doi.org/10.1007/978-3-642-40154-1Complex Systems; Complexity; Entropy Production; Non-Equilibrium Systems
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Core Values and Their Relation to Privacy,a nonequilibrium process to be quantified for systems arbitrarily close to or far from equilibrium. For a system out of equilibrium, the average dissipation over a period, ., will be positive. For field driven flow in the thermodynamic and small field limits, the dissipation function becomes proport
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https://doi.org/10.1007/978-3-642-31943-3pative materials. It consists of a discussion of some general theory, followed by examples. We address the class of materials for which knowledge of the functional form of the dissipation rate function supplies the complete constitutive response, without recourse to further assumptions. A careful di
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