Introduction to Solid State Physicsproblems after each chapter |
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Page vii
Preface to the Second Edition This volume is intended as an introductory
textbook in solid state physics for students of physics , chemistry , and
engineering . My object has been to write an elementary and short account of
representative ...
Preface to the Second Edition This volume is intended as an introductory
textbook in solid state physics for students of physics , chemistry , and
engineering . My object has been to write an elementary and short account of
representative ...
Page xii
Infrared absorption . 118 6 · THERMAL PROPERTIES OF SOLIDS Review of
classical statistical mechanics . Einstein model of the lattice heat capacity . Debye
model of the lattice heat capacity . Diatomic lattice . Review of the Debye theory .
Infrared absorption . 118 6 · THERMAL PROPERTIES OF SOLIDS Review of
classical statistical mechanics . Einstein model of the lattice heat capacity . Debye
model of the lattice heat capacity . Diatomic lattice . Review of the Debye theory .
Page 63
3 Classification of Solids ; Lattice Energy of Ionic Crystals We discuss first in this
chapter the approximate classification of crystals in terms of the dominant type of
chemical binding force keeping the atoms together . We then discuss in some ...
3 Classification of Solids ; Lattice Energy of Ionic Crystals We discuss first in this
chapter the approximate classification of crystals in terms of the dominant type of
chemical binding force keeping the atoms together . We then discuss in some ...
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Contents
DIFFRACTION OF XRAYS BY CRYSTALS | 44 |
CLASSIFICATION OF SOLIDS LATTICE ENERGY | 63 |
ELASTIC CONSTANTS OF CRYSTALS | 85 |
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alloys applied approximately associated atoms axis band boundary calculated cell chapter charge concentration condition conductivity consider constant crystal cubic density dependence determined dielectric diffusion direction discussion dislocation distribution domain effect elastic electric electron elements energy equal equation equilibrium experimental expression factor field force frequency function germanium give given heat capacity hexagonal holes important impurity increase interaction ionic ions lattice levels London magnetic magnetic field mass material measurements metals method motion normal observed obtained parallel particles Phys physics plane polarization positive possible potential problem properties range reference reflection region relation resistivity result room temperature rotation shown in Fig simple solid solution space space group specimen structure surface symmetry Table temperature theory thermal tion transition unit usually values vector volume wave zero zone