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Titlebook: Reactivity of Solids; John Wood,Oliver Lindqvist,Nils-Gösta Vannerberg Book 1977 Springer Science+Business Media New York 1977 Diffusion.N

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On the Reaction between Silver and Copper Iodide in Thin Evaporated Filmsnow the surface temperature of the growing film. This quantity cannot be measured by conventional techniques for any probe like a thermocouple or resistance thermometer itself influences the surface temperature via heat conduction.
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Oxygen Diffusion in Strontium Titanate Studied by Solid/Gas Isotope Exchangecal properties or solid state reactions. In principle, the oxide crystal of known geometry is exposed to a constant amount of gas of a certain oxygen partial pressure at a given temperature. Initially the oxygen -18 concentration is different in both phases. The kinetics of exchange is then followed
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Oxidation Behaviour of Nickel Tellurides in the Composition Region Between NiTe0.8 and NiTe2.0ay and electron diffraction analysis..As a first oxidation step Ni. Te. compounds with p O give rise to NiO andNiTe. phases. At higher temperatures, NiTe.O. andNi.Te.O. are formed, which oxidizes above 600°C to Ni.TeO.. This decomposes above 900°C leaving NiO as a final solid product. Formation of o
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Crystalline Solid Rearrangement Brought about by Gas Removal. Shape and Size of the Crystallites Obt. Little research has been done to know the way in which the structural edifice rearranges, as has been done for metals and metal alloys. This problem has been the aim of the present investigation considering both the following reactions
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Oxidation Behaviour of Zirconium Nitride in Oxygen monoclinic zirconia accompanied with variable amounts of cubic or tetragonal zirconia. The experimental rate laws and the morphological observations suggest a transformation governed by a phase boundary reaction, the controlling process being the external interfacial reaction.
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Oxidation Behaviour of Nickel Tellurides in the Composition Region Between NiTe0.8 and NiTe2.0iTe.O. andNi.Te.O. are formed, which oxidizes above 600°C to Ni.TeO.. This decomposes above 900°C leaving NiO as a final solid product. Formation of oxidized layers significantly slows down the kinetics of the oxidation processes.
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