Textbook
Electronic Properties of Engineering MaterialsISBN: 978-0-471-31627-5
Paperback
336 pages
December 1998, ©1999
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SEMI-CLASSICAL APPROACH.
Conductors and Resistors.
Windows, Doors, and Transparent Electrodes (Optical Properties of Conductors).
Insulators and Capacitors.
Lenses and Optical Fibers (Optical Properties of Insulators).
Inductors, Electromagnets, and Permanent Magnets.
Superconductors and Superconducting Magnets.
Elasticity, Springs, and Sonic Waves.
QUANTUM MECHANICAL APPROACH.
Light Particles, Electron Waves, and Quantum Wells, and Springs.
The Periodic Table, Atomic Spectra, and Neon Lights.
The Game Is Bonds, Interatomic Bonds.
From Bonds to Bands (and Why Grass Is Green).
Free Electron Waves in Metals.
Nearly-Free Electrons--Bands, Gaps, Holes, and Zones.
Metals and Insulators.
Semiconductors.
LEDs, Photodetectors, Solar Cells, and Transistors.
Suggestions for Further Reading.
Index.
Conductors and Resistors.
Windows, Doors, and Transparent Electrodes (Optical Properties of Conductors).
Insulators and Capacitors.
Lenses and Optical Fibers (Optical Properties of Insulators).
Inductors, Electromagnets, and Permanent Magnets.
Superconductors and Superconducting Magnets.
Elasticity, Springs, and Sonic Waves.
QUANTUM MECHANICAL APPROACH.
Light Particles, Electron Waves, and Quantum Wells, and Springs.
The Periodic Table, Atomic Spectra, and Neon Lights.
The Game Is Bonds, Interatomic Bonds.
From Bonds to Bands (and Why Grass Is Green).
Free Electron Waves in Metals.
Nearly-Free Electrons--Bands, Gaps, Holes, and Zones.
Metals and Insulators.
Semiconductors.
LEDs, Photodetectors, Solar Cells, and Transistors.
Suggestions for Further Reading.
Index.