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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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Beyond the Second Law: An Overviewctual rates, or the probability of fluctuations about the average behaviour. The last few decades have seen significant advances, both theoretical and applied, in understanding and predicting the behaviour of non-equilibrium systems beyond what the Second Law tells us. Novel theoretical perspectives
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The Dissipation Function: Its Relationship to Entropy Production, Theorems for Nonequilibrium Systema 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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A Theoretical Basis for Maximum Entropy Production theoretical basis, MaxEP has largely been applied in an . manner. Consequently its apparent successes remain something of a curiosity while the interpretation of its apparent failures is fraught with ambiguity. Here we show how Jaynes’ maximum entropy (MaxEnt) formulation of statistical mechanics p
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Dissipation Rate Functions, Pseudopotentials, Potentials and Yield Surfacespative 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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Control Volume Analysis, Entropy Balance and the Entropy Production in Flow Systemse calculations. Firstly, the principles of control volume analysis are enunciated and applied to flows of conserved quantities (e.g. mass, momentum, energy) through a control volume, giving integral (Reynolds transport theorem) and differential forms of the conservation equations. Several definition
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