Semiconductor Physics and Devices Solution Manual 4th Edition by Donald A Neamen – Ebook PDF Instant Download/Delivery: 0073529583 ,9780073529585
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Product details:
ISBN 10: 0073529583
ISBN 13: 9780073529585
Author: Donald A Neamen
Semiconductor Physics and Devices Solution Manual 4th Edition Table of contents:
Chapter 1: The Crystal Structure of Solids
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Solutions for crystal lattice, Miller indices, density, and structural problems
Chapter 2: Introduction to Quantum Mechanics
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Exercise and problem solutions involving energy levels, wavefunctions, and quantum fundamentals
Chapter 3: Introduction to the Quantum Theory of Solids
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Worked solutions addressing band structure, effective mass, and related solid-state quantum concepts
Chapter 4: The Semiconductor in Equilibrium
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Solutions covering Fermi levels, intrinsic and extrinsic behavior, carrier concentration calculations
Chapter 5: Carrier Transport Phenomena
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Detailed explanations on drift, diffusion, mobility, and related transport mechanisms
Chapter 6: Nonequilibrium Excess Carriers in Semiconductors
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Solutions on recombination, generation, continuity equations, and excess carrier dynamics
Chapter 7: The p–n Junction
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Problem-solving steps for depletion region, barrier potential, and junction characteristics
Chapter 8: The p–n Junction Diode
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Worked examples on diode I–V behavior, ideality factors, and dynamic resistance
Chapter 9: Metal–Semiconductor and Semiconductor Heterojunctions
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Solutions for work function, Schottky barrier, heterojunction potentials, and alignment
Chapter 10: Fundamentals of the Metal–Oxide–Semiconductor Field‑Effect Transistor (MOSFET)
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Detailed solutions covering MOS structure, capacitive modeling, and device equations
Chapter 11: MOSFET – Additional Concepts
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Advanced problem solutions on short-channel effects, scaling, and MOSFET non-idealities
Chapter 12: The Bipolar Transistor
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Complete worked examples for BJT operation, current gain, and biasing analysis
Chapter 13: The Junction Field‑Effect Transistor (JFET)
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Solutions including pinch-off voltage, transfer characteristics, and device modeling
Chapter 14: Optical Devices
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Problems and solutions addressing LED, laser, and photodetector physics
Chapter 15: Semiconductor Microwave and Power Devices
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Analysis of microwave transistors, power devices, and high-frequency behavior
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