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Titlebook: Microscopic Structure and Dynamics of Liquids; J. Dupuy,A. J. Dianoux Book 1978 Springer Science+Business Media New York 1978 development.

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Electronic Theory of the Thermodynamics and Structure of Liquid Metalshis has resulted from a conjugation of the electron theory of metals and the theory of classical fluids. These lecture notes will describe some recent work in this area. A comprehensive review is not intended. The selection of topics reflects the author’s own interest.
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Critical Phenomena in Fluidsct exhaustively, but rather to explain the principal ideas, and to provide a guide to the vast literature on critical phenomena for the noninitiate. The original lectures consisted of three parts: (i) An account of static critical phenomena in fluids (theory and experiment), (ii) a brief introductio
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On Dipolar Fluids a permanent point dipole at the centre. Various theoretical approaches for the structural, dielectric and thermodynamic properties are examined. One of these, the linearized hypernetted-chain equation (LHNC), turns out to be remarkably accurate. This conclusion is reached by comparing the Monte Car
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Superionic Conductors : The Independent Particle Modelhe theoretical aspects of this phenomenon. Basically one is dealing thereby with systems in which one species of atoms is in a liquid like state while the other forms a lattice which acts like a periodic potential on the ionic liquid. An example is AgI. Here a phase transition takes place at T=146°C
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Quasielastic Neutron Scattering from α-AgIs of a simple model.. As has already been discussed in the introductory part of this session, α-AgI may be visualized to a first approximation as a sea of mobile silver ions within a rigid b.c.c. iodide ion lattice. The question we asked ourselves is the following. How do the silver ions move on mic
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