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Titlebook: Microscale and Nanoscale Heat Transfer; Sebastian Volz Book 2007 Springer-Verlag Berlin Heidelberg 2007 Condensed matter.Nanoscience.Trans

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Laws of Macroscopic Heat Transferand Their Limits,c description of heat transfer. This is followed by a discussion of the length and time scales characterising these transfer mechanisms. We then study the hypotheses underlying these models in order to determine their field of validity. We outline transfer mechanisms beyond the validity of macroscop
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Electrons and Phonons,r basic properties in order to be able to describe transport phenomena in crystalline solids. Indeed, transport phenomena will provide the guiding motivation..Transport phenomena in dilute media were discussed with the help of the Boltzmann equation in the Chapter on Transport in Dilute Media by . i
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Introduction to Radiative Transfer,ating in an arbitrary medium is characterised by various length scales: wavelength, coherence length, mean free path (of scattering, transport, or absorption), and skin depth. In order to cover several areas of interest for micro and nanoheat transfer, the discussion is divided into two parts..In th
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Solution of the Boltzmann Equationfor Phonon Transport,n on nanoscales under certain hypotheses. After a brief summary of the theory leading to a radiative transfer equation for phonons, we present the . . method and the discrete ordinate method. The first is based on a global approach to transfer in which the only unknown is the local internal energy.
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