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Semiconductor Physics: An Introduction (Springer Series in Solid-State Sciences) ePub download

by Karlheinz Seeger

  • Author: Karlheinz Seeger
  • ISBN: 3540538097
  • ISBN13: 978-3540538097
  • ePub: 1942 kb | FB2: 1758 kb
  • Language: English
  • Category: Engineering
  • Publisher: Springer-Verlag Berlin and Heidelberg GmbH & Co. K; 5th edition (October 1991)
  • Pages: 516
  • Rating: 4.1/5
  • Votes: 378
  • Format: lrf rtf mobi mbr
Semiconductor Physics: An Introduction (Springer Series in Solid-State Sciences) ePub download

Springer Series in Solid-State Sciences. Semiconductor Physics. Authors: Seeger, Karlheinz

Springer Series in Solid-State Sciences. Authors: Seeger, Karlheinz. Each section of the book begins with a description of an experiment. The theory is then developed as far as necessary to understand the experimental results. Everyone with high-school mathematics should be able to follow the calculations. A band structure calculation for the diamond lattice is supplemented with a personal computer program.

Semiconductor Physics - An Introduction - is suitable for the senior undergraduate or new graduate student majoring in electrical engineering or physics. It will also be useful to solid-state scientists and device engineers involved in semiconductor design and technology.

Semiconductor Physics: An Introduction Springer Series in Solid-State Sciences (Том 40).

It is a pleasure to take the opportunity to express my sincere grati tude to many colleagues who provided valuable hints for improvements, even including lists of misprints (which I hope have now been complete ly eliminated). Semiconductor Physics: An Introduction Springer Series in Solid-State Sciences (Том 40). Автор. Издание: 3, иллюстрированное. Springer Science & Business Media, 2013.

Semiconductor Physics book. Semiconductor Physics: An Introduction (Springer Series In Solid State Sciences). by. Karlheinz Seeger. Semiconductor Physics - An Introduction - is suitable for the senior undergraduate or new graduate student majoring in electrical engineering or physics.

Volume 40 Semiconductor Physics - An Introduction By K Seeger Volume 41 The LMTO Method Muffin-Tin Orbitals and Electronic Structure. Skriver Volume 42 Crystal Optics with Spatial Dispersion, and Excitons. By V. M. Agranovich and V. L. Ginzburg Volume 43 Resonant Nonlinear Interactions of Light with Matter.

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Series: Springer Series in Solid-State Sciences 40. File: PDF, . 7 MB. Читать онлайн.

Semiconductor Physics. Springer Series in Solid-State Sciences. Book 40. Karlheinz Seeger9 March 2013. Springer Science & Business Media. File: PDF, 1. 3 MB.

But recent developments such as the Gunn effect, the acoustoelectric effect, superlattices, quantum well structures, and the integral and fractional quantum Hall effect are also discussed. The book has appeared in translation in Russian, Chinese and Japanese. Series: Springer Series in Solid-State Sciences 40.

Televisions, telephones, watches, calculators, robots, airplanes and space vehicles all depend on silicon chips. Life as we know it would hardly be possible without semiconductor devices. An understanding of how these devices work requires a detailed knowledge of the physics of semiconductors, including charge transport and the emission and absorption of electromagnetic waves. This book may serve both as a university textbook and as a reference for research and microelectronics engineering. Each section of the book begins with a description of an experiment. The theory is then developed as far as necessary to understand the experimental results. Everyone with high-school mathematics should be able to follow the calculations. The band structure calculations for the diamond and zinc blende types of lattice are supplemented with a personal computer program. Semiconductor physics developed most rapidly in the two decades following the invention of the transistor, and naturally most of the references date from this time. But recent developments such as the Gunn effect, the acoustoelectric effect, superlattices, quantum well structures, and the quantum Hall effect are also discussed. The exercises provided (answers to which are available) will greatly assist the student in consolidating the material presented. From the reviews:"This book is a must for any theoretical and experimental physicist working in the area of semiconductor physics."
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