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Titlebook: Developments in the Structural Chemistry of Alloy Phases; Based on a symposium B. C. Giessen Book 1969 Springer Science+Business Media New

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Metal-Rich Metal-Metalloid Phaseson to having borides, carbides, nitrides, and oxides lumped together in one class. It is indeed rare, but not impossible, to find an individual structure type that spans the entire range from borides to oxides. On the other hand, there is so much overlap between types that a common classification does seem justified.
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Handbooks in Health, Work, and Disabilityoy phases and phase diagrams. In this paper the theories mentioned above will be applied to phase diagrams of the transition elements with elements of the second period, and to compound formation in general.
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Search for a Unified Crystal Chemistry of Metalsnvolving crystal symmetry, electron concentration per primitive cell, and the symmetry of the energy bands at the Fermi level). The energy band factor is generally weak and is dominated by other factors, particularly when the effective electron concentration is relatively high (.), and when the diff
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Structural Principles of Giant Cellsltaneously one of the most complicated structure problems that lay ahead. In this paper Pauling discussed the atomic arrangement of Mg.Sn, which has the calcium fluoride structure, and also gave a brief account of an X-ray diffraction study of crystals of NaCd.. The diffraction patterns of these cry
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Metal-Rich Metal-Metalloid Phasesrich compounds the metalloid atom is isolated and surrounded by six or eight transition metal atoms in close contact with each other. The metalloid atom is therefore interstitial, sometimes in the strict sense that the phase fields include metalloid-free (“unfilled”) compositions. Five structure typ
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