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ISBN: 3642100473

[SR: 8496945], Paperback, [EAN: 9783642100475], Springer, Springer, Book, [PU: Springer], Springer, Semiconductor devices are ubiquitous in the modern computer and telecommunications industry. A precise knowledge of the transport equations for electron flow in semiconductors when a voltage is applied is therefore of paramount importance for further technological breakthroughs. In the present work, the author tackles their derivation in a systematic and rigorous way, depending on certain key parameters such as the number of free electrons in the device, the mean free path of the carriers, the device dimensions and the ambient temperature. Accordingly a hierarchy of models is examined which is reflected in the structure of the book: first the microscopic and macroscopic semi-classical approaches followed by their quantum-mechanical counterparts. , 13725, Semiconductors, 13707, Electronics, 227544, Electrical & Electronics, 173515, Engineering, 173507, Engineering & Transportation, 1000, Subjects, 283155, Books, 713557011, Materials Science, 226704, Materials & Material Science, 173515, Engineering, 173507, Engineering & Transportation, 1000, Subjects, 283155, Books, 13570, Chemistry, 16052551, Alkaloids, 13571, Analytic, 13511, Biochemistry, 16052341, Chemical Physics, 16052451, Chromatography, 13575, Clinical, 13577, Crystallography, 13922614011, Electrochemistry, 13579, General & Reference, 226694, Geochemistry, 13590, Industrial & Technical, 13581, Inorganic, 16052621, Molecular Chemistry, 16052651, Nuclear Chemistry, 13585, Organic, 16052661, Photochemistry, 13588, Physical & Theoretical, 16052541, Polymers & Macromolecules, 16052401, Safety, 75, Science & Math, 1000, Subjects, 283155, Books, 226697, Electromagnetism, 16052201, Electricity, 16052241, Magnetism, 14545, Physics, 75, Science & Math, 1000, Subjects, 283155, Books, 14567, Mathematical Physics, 14545, Physics, 75, Science & Math, 1000, Subjects, 283155, Books, 14589, Optics, 14545, Physics, 75, Science & Math, 1000, Subjects, 283155, Books, 14585, Solid-State Physics, 13731, Superconductivity, 14545, Physics, 75, Science & Math, 1000, Subjects, 283155, Books, 491732, Physics, 468216, Science & Mathematics, 465600, New, Used & Rental Textbooks, 2349030011, Specialty Boutique, 283155, Books

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ISBN: 3642100473

[SR: 8496945], Paperback, [EAN: 9783642100475], Springer, Springer, Book, [PU: Springer], Springer, Semiconductor devices are ubiquitous in the modern computer and telecommunications industry. A precise knowledge of the transport equations for electron flow in semiconductors when a voltage is applied is therefore of paramount importance for further technological breakthroughs. In the present work, the author tackles their derivation in a systematic and rigorous way, depending on certain key parameters such as the number of free electrons in the device, the mean free path of the carriers, the device dimensions and the ambient temperature. Accordingly a hierarchy of models is examined which is reflected in the structure of the book: first the microscopic and macroscopic semi-classical approaches followed by their quantum-mechanical counterparts. , 13725, Semiconductors, 13707, Electronics, 227544, Electrical & Electronics, 173515, Engineering, 173507, Engineering & Transportation, 1000, Subjects, 283155, Books, 713557011, Materials Science, 226704, Materials & Material Science, 173515, Engineering, 173507, Engineering & Transportation, 1000, Subjects, 283155, Books, 13570, Chemistry, 16052551, Alkaloids, 13571, Analytic, 13511, Biochemistry, 16052341, Chemical Physics, 16052451, Chromatography, 13575, Clinical, 13577, Crystallography, 13922614011, Electrochemistry, 13579, General & Reference, 226694, Geochemistry, 13590, Industrial & Technical, 13581, Inorganic, 16052621, Molecular Chemistry, 16052651, Nuclear Chemistry, 13585, Organic, 16052661, Photochemistry, 13588, Physical & Theoretical, 16052541, Polymers & Macromolecules, 16052401, Safety, 75, Science & Math, 1000, Subjects, 283155, Books, 226697, Electromagnetism, 16052201, Electricity, 16052241, Magnetism, 14545, Physics, 75, Science & Math, 1000, Subjects, 283155, Books, 14567, Mathematical Physics, 14545, Physics, 75, Science & Math, 1000, Subjects, 283155, Books, 14589, Optics, 14545, Physics, 75, Science & Math, 1000, Subjects, 283155, Books, 14585, Solid-State Physics, 13731, Superconductivity, 14545, Physics, 75, Science & Math, 1000, Subjects, 283155, Books, 491732, Physics, 468216, Science & Mathematics, 465600, New, Used & Rental Textbooks, 2349030011, Specialty Boutique, 283155, Books

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ISBN: 9783642100475

ID: 9783642100475

Physics; Solid State Physics; Spectroscopy and Microscopy; Optical and Electronic Materials; Mathematical Methods in Physics Semiconductor, Wigner-Boltzman equation, quantum hydrodynamic equation, semiconductor devices, transport equations Books, Springer Nature

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This volume presents a systematic and mathematically accurate description and derivation of transport equations in solid state physics, in particular semiconductor devices. Shipping costs:zzgl. Versandkosten., plus shipping costs
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2010, ISBN: 3642100473

Hardcover, ID: A13937056

Softcover reprint of hardcover 1st ed. 2009 Kartoniert / Broschiert Wissenschaftliche Ausstattung, Experimente und Techniken , Physik, Mathematische Physik, Elektronische Geräte und Materialien, Semiconductor; Wigner-Boltzman equation; quantum hydrodynamic equation; Semiconductor devices, mit Schutzumschlag neu, [PU:Springer Berlin Heidelberg; Springer-Verlag GmbH]

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2010, ISBN: 9783642100475

Hardcover, ID: 18264604

Softcover reprint of hardcover 1st ed. 2009, Softcover, Buch, [PU: Springer Berlin]

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** Details of the book - Transport Equations for Semiconductors (Lecture Notes in Physics)**

EAN (ISBN-13): 9783642100475

ISBN (ISBN-10): 3642100473

Hardcover

Paperback

Publishing year: 2010

Publisher: Springer-Verlag GmbH

336 Pages

Weight: 0,509 kg

Language: eng/Englisch

Book in our database since 19.04.2011 22:11:42

Book found last time on 29.08.2018 16:48:18

ISBN/EAN: 9783642100475

ISBN - alternate spelling:

3-642-10047-3, 978-3-642-10047-5

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