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portada dynamics of disordered materials: proceedings of the ill workshop grenoble, france, september 26 28, 1988 (in English)
Type
Physical Book
Publisher
Year
2012
Language
Inglés
Pages
323
Format
Paperback
Dimensions
24.4 x 17.0 x 1.8 cm
Weight
0.54 kg.
ISBN
3642934218
ISBN13
9783642934216

dynamics of disordered materials: proceedings of the ill workshop grenoble, france, september 26 28, 1988 (in English)

Dieter Richter (Illustrated by) · Albert J. Dianoux (Illustrated by) · Winfried Petry (Illustrated by) · Springer · Paperback

dynamics of disordered materials: proceedings of the ill workshop grenoble, france, september 26 28, 1988 (in English) - Richter, Dieter ; Dianoux, Albert J. ; Petry, Winfried

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Synopsis "dynamics of disordered materials: proceedings of the ill workshop grenoble, france, september 26 28, 1988 (in English)"

This book contains the proceedings of a workshop held at the Institute Laue-Langevin in Grenoble in September 1988. Review articles and contributed papers survey recent theoretical and experimental developments on disordered materials and in particular on glasses. A large part of the book concerns the recently proposed mode-coupling approach to the behaviour of a viscous liquid around its glass transition, where the relevant dynamics extend over a broad range in time scales and the application of quite different experimental techniques becomes essential. Contributions report on experiments using dielectric relaxation, NMR or light scattering techniques, and especially neutron scattering techniques. One signature of disordered materials is the occurrence of an excess vibrational density of states at low frequencies. Some situations are presented where the density of states can be understood by taking into account the peculiarities of intra- and intermolecular motions. Another approach to the dynamics of disordered materials is the fracton picture, developed to describe the excitations of fractal objects. Several contributions discuss the dynamics of such fractals, studying mainly the vibrational density of states, and some discuss the application of the fracton concept to materials without a fractal structure like glasses.

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