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Titlebook: Nano/Microscale Heat Transfer; Zhuomin M. Zhang Textbook 2020Latest edition Springer Nature Switzerland AG 2020 Heat Transfer Graduate Tex

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Near-Field Energy Transfer,ous chapters. Because of the important applications to energy transport and conversion, this chapter focuses on near-field radiative heat transfer between objects in close vicinity. The phenomenon of photon tunneling and the principle of fluctuation–dissipation theorem will be presented, along with recent theoretical and experimental developments.
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Electron and Phonon Transport,evoted to semiconductor materials and devices, with an emphasis on optoelectronic applications such as solar cells, thermophotovoltaic systems, light-emitting diodes (LEDs), and semiconductor lasers including quantum well lasers.
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Introduction,the past 40 years. Developments in semiconductor processing and surface sciences have allowed precise control over critical dimensions with desirable properties for solid-state devices. In the past 30 years, there have been tremendous developments in micro- and nanoelectromechanical systems (MEMS an
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Overview of Macroscopic Thermal Sciences,ches exist in presenting the subject of thermodynamics. Most engineering textbooks first introduce temperature, then discuss energy, work, and heat, and define entropy afterward. An overview of classical thermodynamics is provided that is somewhat beyond typical undergraduate textbooks. The basic ph
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Elements of Statistical Thermodynamics and Quantum Theory, important distributions are derived based on the statistics for different types of particles. The microscopic descriptions and results are then linked to macroscopic quantities and the laws of thermodynamics. The application to ideal gases is presented in this chapter, while the applications to bla
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