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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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書目名稱Microscopic Structure and Dynamics of Liquids
編輯J. Dupuy,A. J. Dianoux
視頻videohttp://file.papertrans.cn/634/633437/633437.mp4
叢書名稱NATO Science Series B:
圖書封面Titlebook: Microscopic Structure and Dynamics of Liquids;  J. Dupuy,A. J. Dianoux Book 1978 Springer Science+Business Media New York 1978 development.
描述What did we have in mind when in May, 1976, we (Professor de Gennes, Dr. Tourand and ourselves) thought of a Summer School in the field of liquids? First, we wanted to present and discuss the new results that have been obtained recently, in particular at the high flux reactor of the Institut Laue-Langevin in Grenoble since it became operational in 1972. In order to achieve this goal, the major part of this Summer School was devoted to an ex- tensive presentation of the gen~ra1 concepts and methods of study- ing this state of matter (time-dependent correlation functions, molecular dynamics, intermolecular forces, spectroscopic tech- niques ??? ) and concentrated on a few specific systems which have seen significant development in the last few years, both theoret- ically and experimentally. These systems are the different classes of simple liquids: metallic liquids, ionic liquids, simple molecu- lar liquids and the new field of superionic conductors (solid electrolytes). Furthermore, we wanted to put some emphasis on a particular research area in the field of liquids, namely critical phenomena in fluids. This was chosen both because of our personal interest in this field and the majo
出版日期Book 1978
關(guān)鍵詞development; dynamics; electrolyte; experiment; laser; structure
版次1
doihttps://doi.org/10.1007/978-1-4684-0859-1
isbn_softcover978-1-4684-0861-4
isbn_ebook978-1-4684-0859-1Series ISSN 0258-1221
issn_series 0258-1221
copyrightSpringer Science+Business Media New York 1978
The information of publication is updating

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On Dipolar Fluidstion solved with a similar truncation of the potential. The knowledge of this accurate solution enables us then to show that all presently available methods fail to adequately treat the long-range part of the dipole-dipole interaction in a computer simulation. The effect of polarizability is investigated.
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Single Particle and Collective Aspects of the Silver Ion Motion in α-AgIra plus a purely elastic contribution [3], because there is a local diffusive motion within a limited volume (see Fig. 5 in ref. [1]). We have therefore chosen a model which allows for both types of effects. Aperfect fit to our data has been obtained with the parameter values given in Table 1 for 250°C.
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Quasielastic Neutron Scattering from α-AgIa 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 microscopic scales of a few ?ngstroms and picoseconds ? In particular, how does this microscopic motion depend on temperature ?
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