Colinge, J.-P.; Colinge, C.A. Physics of Semiconductor Devices

# Physics of Semiconductor Devices

## Colinge, J.-P.; Colinge, C.A.

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From the Publisher:

Physics of Semiconductor Devices covers both basic classic topics such as energy band theory and the gradual-channel model of the MOSFET as well as advanced concepts and devices such as MOSFET short-channel effects, low-dimensional devices and single-electron transistors. Concepts are introduced to the reader in a simple way, often using comparisons to everyday-life experiences such as simple fluid mechanics. They are then explained in depth and mathematical developments are fully described.
Physics of Semiconductor Devices contains a list of problems that can be used as homework assignments or can be solved in class to exemplify the theory. Many of these problems make use of Matlab and are aimed at illustrating theoretical concepts in a graphical manner.

From the Back Cover:

Physics of Semiconductor Devices is a textbook aimed at college undergraduate and graduate teaching. It covers both basic classic topics such as energy band theory and the gradual-channel model of the MOSFET as well as advanced concepts and devices such as MOSFET short-channel effects, low-dimensional devices and single-electron transistors. As a prerequisite, this text requires mathematics through differential equations and modern physics where students are introduced to quantum mechanics. Concepts are introduced to the reader in a simple way, often using comparisons to everyday-life experiences such as simple fluid mechanics. They are then explained in depth and mathematical developments are fully described.
Physics of Semiconductor Devices contains a list of problems that can be used as homework assignments or can be solved in class to exemplify the theory. Many of these problems make use of Matlab and are aimed at illustrating theoretical concepts in a graphical manner. A series of these Matlab problems is based on a simple finite-element solution of semiconductor equations. These yield the exact solution to equations that have no analytical solutions and are usually solved using approximations, such as the depletion approximation. The exact numerical solution can then be graphically compared to the solution using the approximation.
The different chapters of Physics of Semiconductor Devices cover the following material: Energy Band Theory. Theory of Electrical Conduction. Generation/Recombination Phenomena. The PN Junction Diode. Metal-semiconductor contacts. JFET and MESFET. The MOS Transistor. The Bipolar Transistor. Heterojunction Devices. Quantum-Effect Devices. Semiconductor Processing.

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## 1.Physics of Semiconductor Devices

Editorial: Springer (2005)
ISBN 10: 0387285237 ISBN 13: 9780387285238
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Descripción Springer, 2005. Paperback. Estado de conservación: New. 2002. This item is printed on demand. Nº de ref. de la librería DADAX0387285237

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## 2.Physics of Semiconductor Devices

Editorial: Springer (2005)
ISBN 10: 0387285237 ISBN 13: 9780387285238
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Descripción Springer, 2005. Paperback. Estado de conservación: New. book. Nº de ref. de la librería 0387285237

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## 3.Physics of Semiconductor Devices (Paperback)

Editorial: Springer-Verlag New York Inc., United States (2005)
ISBN 10: 0387285237 ISBN 13: 9780387285238
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Descripción Springer-Verlag New York Inc., United States, 2005. Paperback. Estado de conservación: New. hardcover editon, 2002.. 234 x 155 mm. Language: English . Brand New Book ***** Print on Demand *****.Physics of Semiconductor Devices covers both basic classic topics such as energy band theory and the gradual-channel model of the MOSFET as well as advanced concepts and devices such as MOSFET short-channel effects, low-dimensional devices and single-electron transistors. Concepts are introduced to the reader in a simple way, often using comparisons to everyday-life experiences such as simple fluid mechanics. They are then explained in depth and mathematical developments are fully described. Physics of Semiconductor Devices contains a list of problems that can be used as homework assignments or can be solved in class to exemplify the theory. Many of these problems make use of Matlab and are aimed at illustrating theoretical concepts in a graphical manner. Nº de ref. de la librería AAV9780387285238

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## 4.Physics of Semiconductor Devices (Paperback)

Editorial: Springer-Verlag New York Inc., United States (2005)
ISBN 10: 0387285237 ISBN 13: 9780387285238
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Descripción Springer-Verlag New York Inc., United States, 2005. Paperback. Estado de conservación: New. hardcover editon, 2002.. 234 x 155 mm. Language: English . Brand New Book ***** Print on Demand *****. Physics of Semiconductor Devices covers both basic classic topics such as energy band theory and the gradual-channel model of the MOSFET as well as advanced concepts and devices such as MOSFET short-channel effects, low-dimensional devices and single-electron transistors. Concepts are introduced to the reader in a simple way, often using comparisons to everyday-life experiences such as simple fluid mechanics. They are then explained in depth and mathematical developments are fully described. Physics of Semiconductor Devices contains a list of problems that can be used as homework assignments or can be solved in class to exemplify the theory. Many of these problems make use of Matlab and are aimed at illustrating theoretical concepts in a graphical manner. Nº de ref. de la librería AAV9780387285238

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## 5.Physics of Semiconductor Devices

Editorial: Springer-Verlag New York Inc. (2005)
ISBN 10: 0387285237 ISBN 13: 9780387285238
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Descripción Springer-Verlag New York Inc., 2005. PAP. Estado de conservación: New. New Book. Delivered from our UK warehouse in 3 to 5 business days. THIS BOOK IS PRINTED ON DEMAND. Established seller since 2000. Nº de ref. de la librería LQ-9780387285238

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## 6.Physics of Semiconductor Devices

Editorial: Springer (2005)
ISBN 10: 0387285237 ISBN 13: 9780387285238
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Descripción Springer, 2005. Paperback. Estado de conservación: NEW. 9780387285238 Paperback, This listing is a new book, a title currently in-print which we order directly and immediately from the publisher. Nº de ref. de la librería HTANDREE0272668

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## 7.Physics of Semiconductor Devices

Editorial: Springer-Verlag New York Inc. (2005)
ISBN 10: 0387285237 ISBN 13: 9780387285238
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Descripción Springer-Verlag New York Inc., 2005. PAP. Estado de conservación: New. New Book. Shipped from US within 10 to 14 business days. THIS BOOK IS PRINTED ON DEMAND. Established seller since 2000. Nº de ref. de la librería I2-9780387285238

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## 8.Physics of Semiconductor Devices

Editorial: Springer (2016)
ISBN 10: 0387285237 ISBN 13: 9780387285238
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Descripción Springer, 2016. Paperback. Estado de conservación: New. PRINT ON DEMAND Book; New; Publication Year 2016; Not Signed; Fast Shipping from the UK. No. book. Nº de ref. de la librería ria9780387285238_lsuk

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## 9.Physics of Semiconductor Devices

Editorial: Springer-Verlag Gmbh Nov 2005 (2005)
ISBN 10: 0387285237 ISBN 13: 9780387285238
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Descripción Springer-Verlag Gmbh Nov 2005, 2005. Taschenbuch. Estado de conservación: Neu. 242x156x28 mm. Neuware - Physics of Semiconductor Devices covers both basic classic topics such as energy band theory and the gradual-channel model of the MOSFET as well as advanced concepts and devices such as MOSFET short-channel effects, low-dimensional devices and single-electron transistors. Concepts are introduced to the reader in a simple way, often using comparisons to everyday-life experiences such as simple fluid mechanics. They are then explained in depth and mathematical developments are fully described. Physics of Semiconductor Devices contains a list of problems that can be used as homework assignments or can be solved in class to exemplify the theory. Many of these problems make use of Matlab and are aimed at illustrating theoretical concepts in a graphical manner. Physics of Semiconductor Devices is a textbook aimed at college undergraduate and graduate teaching. It covers both basic classic topics such as energy band theory and the gradual-channel model of the MOSFET as well as advanced concepts and devices such as MOSFET short-channel effects, low-dimensional devices and single-electron transistors. As a prerequisite, this text requires mathematics through differential equations and modern physics where students are introduced to quantum mechanics. Concepts are introduced to the reader in a simple way, often using comparisons to everyday-life experiences such as simple fluid mechanics. They are then explained in depth and mathematical developments are fully described. Physics of Semiconductor Devices contains a list of problems that can be used as homework assignments or can be solved in class to exemplify the theory. Many of these problems make use of Matlab and are aimed at illustrating theoretical concepts in a graphical manner. A series of these Matlab problems is based on a simple finite-element solution of semiconductor equations. These yield the exact solution to equations that have no analytical solutions and are usually solved using approximations, such as the depletion approximation. The exact numerical solution can then be graphically compared to the solution using the approximation. The different chapters of Physics of Semiconductor Devices cover the following material: Energy Band Theory. Theory of Electrical Conduction. Generation/Recombination Phenomena. The PN Junction Diode. Metal-semiconductor contacts. JFET and MESFET. The MOS Transistor. The Bipolar Transistor. Heterojunction Devices. Quantum-Effect Devices. Semiconductor Processing. 436 pp. Englisch. Nº de ref. de la librería 9780387285238

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## 10.Physics of Semiconductor Devices

Editorial: Springer-Verlag Gmbh Nov 2005 (2005)
ISBN 10: 0387285237 ISBN 13: 9780387285238
Nuevos Taschenbuch Cantidad: 1
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Descripción Springer-Verlag Gmbh Nov 2005, 2005. Taschenbuch. Estado de conservación: Neu. 242x156x28 mm. Neuware - Physics of Semiconductor Devices covers both basic classic topics such as energy band theory and the gradual-channel model of the MOSFET as well as advanced concepts and devices such as MOSFET short-channel effects, low-dimensional devices and single-electron transistors. Concepts are introduced to the reader in a simple way, often using comparisons to everyday-life experiences such as simple fluid mechanics. They are then explained in depth and mathematical developments are fully described. Physics of Semiconductor Devices contains a list of problems that can be used as homework assignments or can be solved in class to exemplify the theory. Many of these problems make use of Matlab and are aimed at illustrating theoretical concepts in a graphical manner. Physics of Semiconductor Devices is a textbook aimed at college undergraduate and graduate teaching. It covers both basic classic topics such as energy band theory and the gradual-channel model of the MOSFET as well as advanced concepts and devices such as MOSFET short-channel effects, low-dimensional devices and single-electron transistors. As a prerequisite, this text requires mathematics through differential equations and modern physics where students are introduced to quantum mechanics. Concepts are introduced to the reader in a simple way, often using comparisons to everyday-life experiences such as simple fluid mechanics. They are then explained in depth and mathematical developments are fully described. Physics of Semiconductor Devices contains a list of problems that can be used as homework assignments or can be solved in class to exemplify the theory. Many of these problems make use of Matlab and are aimed at illustrating theoretical concepts in a graphical manner. A series of these Matlab problems is based on a simple finite-element solution of semiconductor equations. These yield the exact solution to equations that have no analytical solutions and are usually solved using approximations, such as the depletion approximation. The exact numerical solution can then be graphically compared to the solution using the approximation. The different chapters of Physics of Semiconductor Devices cover the following material: Energy Band Theory. Theory of Electrical Conduction. Generation/Recombination Phenomena. The PN Junction Diode. Metal-semiconductor contacts. JFET and MESFET. The MOS Transistor. The Bipolar Transistor. Heterojunction Devices. Quantum-Effect Devices. Semiconductor Processing. 436 pp. Englisch. Nº de ref. de la librería 9780387285238

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