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Aggiungi al carrelloHardcover. Condizione: Good. some shelfwear/edgewear but still NICE! - may have remainder mark or previous owner's name Standard-sized.
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EUR 48,13
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EUR 52,51
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Aggiungi al carrelloHard Cover. Condizione: Good. No Jacket. Hard cover. Usual ex-library features. The interior is clean and tight. Binding is good. Cover shows slight wear. Library label taped on front. 193 pages. Ex-Library.
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EUR 73,18
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Aggiungi al carrelloCondizione: New. pp. 216.
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Editore: Springer Nature (Sie), 2020
Lingua: Inglese
Da: Books in my Basket, New Delhi, India
EUR 43,70
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Aggiungi al carrelloN.A. Condizione: New. ISBN:9783709148945.
Da: Best Price, Torrance, CA, U.S.A.
EUR 76,73
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EUR 95,78
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Editore: Springer Berlin Heidelberg, Springer Berlin Heidelberg Dez 2006, 2006
ISBN 10: 3540346457 ISBN 13: 9783540346456
Lingua: Inglese
Da: buchversandmimpf2000, Emtmannsberg, BAYE, Germania
EUR 53,49
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Aggiungi al carrelloBuch. Condizione: Neu. Neuware -This book presents topics of science and engineering which occur in nature or are part of daily life. It describes phenomena which are modelled by partial differential equations, relating to physical variables like mass, velocity and energy, etc. to their spatial and temporal variations. The author has chosen topics representing his career-long interests, including the flow of fluids and gases, granular flows, biological processes like pattern formation on animal skins, kinetics of rarified gases and semiconductor devices. Each topic is presented in its scientific or engineering context, followed by an introduction of applicable mathematical models in the form of partial differential equations.Springer Verlag GmbH, Tiergartenstr. 17, 69121 Heidelberg 220 pp. Englisch.
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EUR 120,05
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Da: Mispah books, Redhill, SURRE, Regno Unito
EUR 102,01
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Aggiungi al carrelloPaperback. Condizione: New. New. book.
Editore: Springer, Wien, Springer Vienna, Springer, 1985
ISBN 10: 3211818928 ISBN 13: 9783211818923
Lingua: Inglese
Da: AHA-BUCH GmbH, Einbeck, Germania
EUR 145,09
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Aggiungi al carrelloBuch. Condizione: Neu. Neuware - In the last two decades semiconductor device simulation has become a research area, which thrives on a cooperation of physicists, electrical engineers and mathe maticians. In this book the static semiconductor device problem is presented and analysed from an applied mathematician's point of view. I shall derive the device equations - as obtained for the first time by Van Roosbroeck in 1950 - from physical principles, present a mathematical analysis, discuss their numerical solu tion by discretisation techniques and report on selected device simulation runs. To me personally the most fascinating aspect of mathematical device analysis is that an interplay of abstract mathematics, perturbation theory, numerical analysis and device physics is prompting the design and development of new technology. I very much hope to convey to the reader the importance of applied mathematics for technological progress. Each chapter of this book is designed to be as selfcontained as possible, however, the mathematical analysis of the device problem requires tools which cannot be presented completely here. Those readers who are not interested in the mathemati cal methodology and rigor can extract the desired information by simply ignoring details and proofs of theorems. Also, at the beginning of each chapter I refer to textbooks which introduce the interested reader to the required mathematical concepts.