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Titlebook: High Pressure Chemistry; Proceedings of the N H. Kelm Conference proceedings 1978 D. Reidel Publishing Company, Dordrecht, Holland 1978 Neu

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,Mössbauer Spectroscopy on Solids Under Pressure,opy therefore includes only a very short recapitulation of this general theoretical background and the common experimental details. Various reviews on high pressure Mössbauer spectroscopy have also been published rather recently / 10–18 /. It is therefore not intended to give a complete review on al
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Experimental Investigations of Fluids at High Pressures and Elevated Temperatures,mperatures. Fluids of polar molecules and binary mixtures are emphasized. After a discussion of critical data and new PVT-results particularly on water, aqueous salt solutions and methanol, selected binary systems and their critical behaviour are considered. - Spectroscopic investigations and method
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The Effect of Pressure on the Electronic Structure of Fluids,al regions are presented and discussed. The results are discussed with special emphasis on their relationship to some theoretical models for the density induced nonmetal to metal transitions in fluid metals and the temperature induced nonmetal to metal transition in fluid Se and Te.
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Determination and Interpretation of Volumes of Activation, rather than a systematic treatment of various classes of reactions, which are in fact reported elsewhere (1–7). Emphasis is given to the formal evaluation of the volume of activation as well as to the numerical procedures. An attempt is also made to interpret the volume of activation in terms of a
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Organic Model Reactions Under Pressure,nds and sometimes mixtures; in contrast, my remarks and those of my colleagues to follow are almost exclusively directed at chemistry and chemical properties. It goes without saying, however, that the chemist who uses high pressure methodology depends very much indeed on the knowledge that has been
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The Effects of Pressure on the Rates of Reactions of Coordination Compounds in Solution,the last ten years. A short review of these data was written in 1974 by Stranks (1). The method has been used almost exclusively to aid in the elucidation of reaction mechanisms of transition metal complexes. Thus the volume of activation, ΔV., derived from the pressure dependence of the rate coeffi
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Kinetic Phenomena in Gases at High Pressure,llowed up into highly compressed gases and liquids. Examples for photolytic cage effect, atom recombination, dissociation, isomerization, association, and hot atom reaction are discussed. Theoretical models such as many-particle trajectory calculations, diffusion equations for reactive systems/and m
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