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Titlebook: Semiconductor Physical Electronics; Sheng S. Li Book 2006Latest edition Springer-Verlag New York 2006 Diode.bipolar junction transistor.el

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書目名稱Semiconductor Physical Electronics
編輯Sheng S. Li
視頻videohttp://file.papertrans.cn/865/864876/864876.mp4
概述Provides comprehensive coverage of the physical and operational principles of semiconductor materials and devices.Serves as an essential graduate text and reference work for the understanding of basic
圖書封面Titlebook: Semiconductor Physical Electronics;  Sheng S. Li Book 2006Latest edition Springer-Verlag New York 2006 Diode.bipolar junction transistor.el
描述.Semiconductor Physical Electronics, Second Edition, provides comprehensive coverage of fundamental semiconductor physics that is essential to an understanding of the physical and operational principles of a wide variety of semiconductor electronic and optoelectronic devices. This text presents a unified and balanced treatment of the physics, characterization, and applications of semiconductor materials and devices for physicists and material scientists who need further exposure to semiconductor and photonic devices, and for device engineers who need additional background on the underlying physical principles. This updated and revised second edition reflects advances in semicondutor technologies over the past decade, including many new semiconductor devices that have emerged and entered into the marketplace. It is suitable for graduate students in electrical engineering, materials science, physics, and chemical engineering, and as a general reference for processing and device engineers working in the semicondictor industry..
出版日期Book 2006Latest edition
關(guān)鍵詞Diode; bipolar junction transistor; electrical engineering; electronics; field-effect transistor; materia
版次2
doihttps://doi.org/10.1007/0-387-37766-2
isbn_softcover978-1-4419-2113-0
isbn_ebook978-0-387-37766-7
copyrightSpringer-Verlag New York 2006
The information of publication is updating

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Classification of Solids and Crystal Structure,alline structure. In one class, the atoms in a solid are set in an irregular manner, without any shortor long-range order in their atomic arrangement. This class of solids is commonly known as noncrystalline or amorphous materials. In another class, the atoms or group of atoms in the solid are arran
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Lattice Dynamics,solid are not at rest, but instead they vibrate with respect to their equilibrium positions. In fact, many thermal properties of solids are determined by the amplitude and phase factor of the atomic vibrations. For example, the specific heat of an insulator is due entirely to its lattice vibrations.
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Semiconductor Statistics,onons, electrons in a metal, and electrons and holes in a semiconductor. These basic statistics are needed to deal with the problems of interactions of a large number of particles in a solid. Since a great deal of physical insight can be obtained from statistical analysis of the particle distributio
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Energy Band Theory,olid is due to the fact that many important physical and optical properties of a solid can be readily explained using its energy band structure. In general, the energy band structure of a solid can be constructed by solving the one-electron Schr?dinger equation for electrons in a crystalline solid t
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Equilibrium Properties of Semiconductors,hanged by many orders of magnitude through the incorporation of foreign impurities has made the semiconductor one of the most intriguing and unique electronic materials among all the crystalline solids. The invention of germanium and silicon transistors in the early 1950s and the silicon integrated
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