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The Crystalline State
The Specific Heat of Solids and Lattice Vibrations
Some Properties of Metallic Lattices
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absorption according alkali halides alloys antiferromagnetic approximation assume atoms Brillouin zone calculated charge coefficient conduction band consider corresponding cubic Curie Curie temperature curve Debye density determined dielectric constant diffraction diffusion dipole direction discussed displacement distance divalent domain donor electric field emission entropy equal equation equilibrium example excited exciton experimental expression external field F centers Fermi level ferroelectric ferromagnetic follows free electron frequency germanium given holes impurities increases insulators interaction interstitial ionic crystals ions lattice vibrations luminescence magnetic field metals molecule momentum N. F. Mott NaCl negative ion vacancy number of electrons observed obtained paramagnetic particles photon Phys physical plane positive ion vacancy potential energy refer region represented resonance result scattering secondaries Seitz semiconductor solid specific heat spin spontaneous polarization structure surface theory thermal transition unit cell unit volume valence band values velocity wave functions wave vector X-ray zero