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24Dre: Dreibholz, “Investigation of Binary and Ternary Molybdenum Alloys,”Z. Phys. Chem., 108, 1–50 (1924) in German. (Equi Diagram; Experimental)
Indicates key paper 53Gea: G.A. Geach and E. Summers-Smith, “The Constitution of Gold-Molybdenum Alloys, with Particular Reference to the Solubility of Mclybdenum in Gold,”J. Inst. Met., 82, 471–474 (1953). (Equi Diagram, Crys Structure; Experimental)
Indicates key paper 60Rau: E Raub, “The Alloys of Gold with Chronium, Molybdenum, and Tungsten,”Z. Metallkd., 51(5), 290–291 (1960) in German. (Equi Diagram; Experimental)
74Pil: G. Pikington, G. Antwi-Boateng, and G. Meyrick, “Phase Transformations in Vapor-Quenched Molybdenum and Molybdenum Gold Alloys,” U.S. Nat. Tech. Inform. Serv., AD Rep., No. 776970/6GA, 73p (1974). (Meta Phases; Experimental)
Indicates key paper 80Bre: L. Brewer, Ed.,Molybdenum: Physico-Chemical Properties of its Compounds and Alloys, Atomic Energy Reviews, Special Issue No. 7 (1980). (Equi Diagram, Thermo; Theory; Indicates presence of a phase diagram)
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Work was partly supported by the International Gold Corporation Limited (InterGold) and American Society for Metals (ASM). Literature searched through 1983. Part of the bibliographic search was provided by ASM. Professor Massalski is the ASM/NBS Data Program Editor-in-Chief for the Binary Program, and also Category Editor for binary gold alloys, jointly with Dr. Okamoto. Professor Brewer is the ASM/NBS Data Program Category Editor for binary molybdenum alloys.
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Massalski, T.B., Okamoto, H. & Brewer, L. The Au−Mo (Gold-Molybdenum) system. Bulletin of Alloy Phase Diagrams 7, 449–452 (1986). https://doi.org/10.1007/BF02867807
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DOI: https://doi.org/10.1007/BF02867807