Chapter 1 Thermal expansion; atomic
diffusion
Chapter 2 Conduction in thin films; interconnects
in microelectronics;
electromigration
Chapter 3 Planck's and Stefan's laws; atomic
magnetic moment; Stem-Gerlach
experiment
Chapter 4 Field emission from carbon nanotubes;
Griineisen's thermal
expansion
Chapter 5 Piezoresistivity; amorphous semiconductors
Chapter 6 LEDs; solar cells; semiconductor
lasers
Chapter 7 Debye relaxation; local field in
dielectrics; ionic polarizability;
Langevin dipolar polarization;
dielectric mixtures
Chapter 8 Pauli spin paramagnetism; band
model of ferromagnetism; giant
magnetoresistance (OMR); magnetic
storage
Chapter 9 Sellmeier and Cauchy dispersion
relations; Reststrahlen or lattice
absorption; luminescence and
white LEDs
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purbanchal university notes on ELECTRONIC ENGINEERING MATERIAL
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March 29, 2018
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