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The electronic structure of solids By JOHN C SLATER Professor of Physics Massachu
Metallic conductivity experimental part By Arsxmosn N GERRITSEN Professor
Theory of electrical and thermal conductivity in metals By Hmznv Jones Professor
4 other sections not shown
absorption alkali alloys approximation assumed atomic orbitals bonding BRILLOUIN zone calculation carrier coefficient conduction band conduction electrons configuration interaction constant copper correlation cubic curve dependence diamond discussed effect elastic electrical elements energy bands energy levels equation excited experimental FERMI surface ferromagnetism free electrons galvanometer germanium given HARTREE-FOCK holes hydrogen impurity atom increase integral internuclear distance lattice layers linear combination Lond low temperatures magnetic field measurements molecular orbital molecule monovalent metals number of electrons obtained one-electron energy optical periodic potential perturbation photoconduction photocurrent Phys Physik plane wave positive potential energy problem Proc quantum recombination resistance scattering Sect semiconductors shown in Fig single crystals solid solution spectral response spin structure sulphide symmetry theory thermal tion trapping unit cell valence valence band vector WANNIER functions wave function wave packet wavelength WIGNER-SEITZ cell zero