## Introduction to Solid State Physics |

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Page ix

3 -

stresses. Dilation. Shearing strain. Stress components.

stiffness constants. Energy density. Cubic crystals. Experimental determination of

3 -

**ELASTIC**CONSTANTS OF CRYSTALS Analysis of**elastic**strains andstresses. Dilation. Shearing strain. Stress components.

**Elastic**compliance andstiffness constants. Energy density. Cubic crystals. Experimental determination of

**elastic**...Page 43

3

constants of single crystals. The

insight they give into the nature of the binding forces in solids, and they are also

of ...

3

**Elastic**Constants of Crystals This chapter is concerned with the**elastic**constants of single crystals. The

**elastic**constants are of interest because of theinsight they give into the nature of the binding forces in solids, and they are also

of ...

Page 388

... 166 Einstein relation, 309

brass, 58

experimental values, 57 lattice theory of, 54 of metals, calculation, 55

energy density, ...

... 166 Einstein relation, 309

**Elastic**anisotropy factor, 52 alpha-brass, 58 beta-brass, 58

**Elastic**compliance constants, 47, 50**Elastic**constants, 49, 50experimental values, 57 lattice theory of, 54 of metals, calculation, 55

**Elastic**energy density, ...

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### Contents

LATTICE ENERGY OF IONIC CRYSTALS | 29 |

ELASTIC CONSTANTS OF CRYSTALS | 43 |

LATTICE VIBRATIONS | 60 |

Copyright | |

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alkali alloy antiferromagnetic applied approximation atoms axes axis barium titanate boundary Brillouin zones calculated charge coefficient conduction band consider crystal structure cube cubic crystal Curie point curve Debye density diamagnetic dielectric constant diffraction dipole direction discussed dislocation displacement distribution domain effect elastic electric field entropy equation equilibrium experimental F-centers factor Fermi ferroelectric ferromagnetic free electron frequency heat capacity holes impurity interaction ionic crystals ions lattice constant lattice points London low temperatures magnetic field mean free path metals molecules motion nearest neighbor normal observed orbital parallel paramagnetic particles perovskite phonons Phys physical plane polarizability polarization positive potential Proc quantum ratio region resonance result room temperature rotation scattering Seitz shear Shockley shown in Fig simple cubic single crystal sodium chloride solids specimen spin superconducting susceptibility symmetry theory thermal tion unit cell unit volume valence values vector velocity wave functions wavelength x-ray zero