#smrgKİTABEVİ Fundamentals of the Electron Theory of Semiconductors - 2026

Editör:
Kondisyon:
Yeni
Sunuş / Önsöz / Sonsöz / Giriş:
Basıldığı Matbaa:
Dizi Adı:
ISBN-10:
9786255674357
Hazırlayan:
Cilt:
Amerikan Cilt
Ciltçi:
Stok Kodu:
1199260379
Boyut:
16x24
Sayfa Sayısı:
145
Basım Yeri:
İstanbul
Baskı:
1
Basım Tarihi:
2026
Kapak Türü:
Karton Kapak
Kağıt Türü:
Enso
Dili:
İngilizce
Kategori:
indirimli
297,50
Havale/EFT ile: 291,55
1199260379
648054
Fundamentals of the Electron Theory of Semiconductors -        2026
Fundamentals of the Electron Theory of Semiconductors - 2026 #smrgKİTABEVİ
297.5
This book provides information on the classification of materials according to the magnitude and temperature dependence of electrical conductivity; the temperature dependence of metal conductivity; the electron theory of electrical conductivity in solids; characteristic parameters of semiconductors including electron drift velocity, mean free path, and electron mobility; weak and strong electric fields and relaxation time; crystal lattices and translation periods; crystalline systems and Bravais lattices; model representations of semiconductor conductivity and the concept of holes; intrinsic conductivity in semiconductors; impurity conductivity in semiconductors; electron and hole concentrations and the Fermi level; density of states and the number of quantum states; the Schrödinger equation for crystals; adiabatic approximation and the Born-Oppenheimer approximation; temperature dependence of the Fermi level in intrinsic semiconductors; and related topics.
This book provides information on the classification of materials according to the magnitude and temperature dependence of electrical conductivity; the temperature dependence of metal conductivity; the electron theory of electrical conductivity in solids; characteristic parameters of semiconductors including electron drift velocity, mean free path, and electron mobility; weak and strong electric fields and relaxation time; crystal lattices and translation periods; crystalline systems and Bravais lattices; model representations of semiconductor conductivity and the concept of holes; intrinsic conductivity in semiconductors; impurity conductivity in semiconductors; electron and hole concentrations and the Fermi level; density of states and the number of quantum states; the Schrödinger equation for crystals; adiabatic approximation and the Born-Oppenheimer approximation; temperature dependence of the Fermi level in intrinsic semiconductors; and related topics.
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