Introduction to Solid State Physics |
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Page 388
... 325 , 326 conductivity Effective magneton numbers , alloys , Electron diffraction
, 18 , 28 197 Electron - electron collisions , 241 Effective mass , 251 , 257
Electron inertia experiments , 268 table , 258 Electron resonance , 153 , 167
Effective ...
... 325 , 326 conductivity Effective magneton numbers , alloys , Electron diffraction
, 18 , 28 197 Electron - electron collisions , 241 Effective mass , 251 , 257
Electron inertia experiments , 268 table , 258 Electron resonance , 153 , 167
Effective ...
Page 389
Free electrons , density in metals , table , 240 dielectric constant , 111 magnetic
shielding by , 140 Free energy , 373 superconductors , 210 Free path ,
conduction electrons , 238 table , 240 phonon , 81 , 82 Free radicals , organic ,
141 , 154 ...
Free electrons , density in metals , table , 240 dielectric constant , 111 magnetic
shielding by , 140 Free energy , 373 superconductors , 210 Free path ,
conduction electrons , 238 table , 240 phonon , 81 , 82 Free radicals , organic ,
141 , 154 ...
Page 395
Supermalloy , 169 , 177 Superstructure lines , 301 Surface states , 289
Susceptibility , antiferromagnetism , 191 , 198 diamagnetic , 134 measurement of
, 139 table , 136 dielectric , 94 magnetic , definition , 134 metals , 233 , 257 , 258
table ...
Supermalloy , 169 , 177 Superstructure lines , 301 Surface states , 289
Susceptibility , antiferromagnetism , 191 , 198 diamagnetic , 134 measurement of
, 139 table , 136 dielectric , 94 magnetic , definition , 134 metals , 233 , 257 , 258
table ...
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Contents
LATTICE ENERGY OF IONIC CRYSTALS | 29 |
ELASTIC CONSTANTS OF CRYSTALS | 43 |
LATTICE VIBRATIONS | 60 |
Copyright | |
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alloy applied approximation atoms axes axis band boundary calculated cell chapter charge chloride condition conductivity consider constant crystal cubic defined dependence determined dielectric diffusion direction discussed dislocations displacement distance distribution domains effect elastic electric electron energy equal equation equilibrium example excitation experimental expression factor field force frequency function given gives heat holes interaction ionic ions lattice levels London magnetic magnetic field material mean measurements mechanism metals method molecules motion negative neighbor normal observed obtained parallel particles Phys physical plane polarization positive possible potential problem properties quantum range reference reflection region relation resistivity result room temperature scattering Show shown in Fig sodium solids space specimen stress structure suppose Table temperature theory thermal tion transition unit usually vacancy values volume wave zero