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Titlebook: Extended Irreversible Thermodynamics; David Jou,José Casas-Vázquez,Georgy Lebon Book 19962nd edition Springer-Verlag Berlin Heidelberg 199

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https://doi.org/10.1007/978-3-319-91382-7l equations of the basic variables. Classically, the set of variables consists of the conserved slow variables (energy, linear momentum, mass) and some order parameters characterizing second-order phase transitions. Here we shall present a generalization of this method by adding the dissipative fast fluxes to the basic set of variables.
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Asit K. Biswas,Cecilia Tortajadast literature. One of them, of a theoretical nature, refers to the so-called “paradox” of propagation of thermal signals with infinite speed. The second one, more closely related to experimental observations, deals with second sound, ballistic phonon propagation and phonon hydrodynamics in solids at low temperatures.
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Extended Irreversible Thermodynamicsp is to find evolution equations for these extra variables. Whereas the evolution equations for the classical variables are given by the usual balance laws, no general criteria exist concerning the evolution equations of the dissipative fluxes, with the exception of the restrictions imposed on them by the second law of thermodynamics.
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