Non-linearity and breakdown in soft condensed matter - Info and Reading Options
proceedings of a workshop held at Calcutta, India, 1-9 December 1993
By K. K. Bardhan

"Non-linearity and breakdown in soft condensed matter" was published by Springer-Verlag in 1994 - Berlin, it has 340 pages and the language of the book is English.
“Non-linearity and breakdown in soft condensed matter” Metadata:
- Title: ➤ Non-linearity and breakdown in soft condensed matter
- Author: K. K. Bardhan
- Language: English
- Number of Pages: 340
- Publisher: Springer-Verlag
- Publish Date: 1994
- Publish Location: Berlin
“Non-linearity and breakdown in soft condensed matter” Subjects and Themes:
- Subjects: ➤ Congresses - Structural analysis (Engineering) - Soft condensed matter - Composite materials - Mechanics - Condensed matter - Physics - Physical geography - Mathematical physics - Mechanics, applied - Geophysics/Geodesy - Mathematical Methods in Physics - Numerical and Computational Methods - Theoretical and Applied Mechanics
Edition Specifications:
- Pagination: 340 p. :
Edition Identifiers:
- The Open Library ID: OL1114141M - OL9077704W
- Online Computer Library Center (OCLC) ID: 31433762
- Library of Congress Control Number (LCCN): 94040085
- ISBN-10: 3540586520
- All ISBNs: 3540586520
AI-generated Review of “Non-linearity and breakdown in soft condensed matter”:
"Non-linearity and breakdown in soft condensed matter" Description:
The Open Library:
There have been considerable advances in recent times in understanding many common material processes that are of practical importance, such as nonlinear response, fracture, breakdown, earthquakes, packing, and granular flow, that are of immense practical importance. This has been mainly due to new applications of statistical physics, including percolation theory, fractal concepts and self-organized criticality. This collection of articles brings together research in those closely allied fields. It deals with problems in material science involving random geometries and nonlinearity at a mesoscopic scale, where local disorder and nonlinearity influence the global behaviour of cracks, for example, and problems where randomness in time evolution is as crucial as the geometry itself.
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