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Titlebook: Amorphous Polymers and Non-Newtonian Fluids; Constantine Dafermos,J. L. Ericksen,David Kinderle Book 1987 Springer Science+Business Media

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期刊全称Amorphous Polymers and Non-Newtonian Fluids
影响因子2023Constantine Dafermos,J. L. Ericksen,David Kinderle
视频video
学科分类The IMA Volumes in Mathematics and its Applications
图书封面Titlebook: Amorphous Polymers and Non-Newtonian Fluids;  Constantine Dafermos,J. L. Ericksen,David Kinderle Book 1987 Springer Science+Business Media
影响因子This IMA Volume in Mathematics and its Applications AMORPHOUS POLYMERS AND NON-NEWTONIAN FLUIDS is in part the proceedings of a workshop which was an integral part of the 1984-85 IMA program on CONTINUUM PHYSICS AND PARTIAL DIFFERENTIAL EQUATIONS We are grateful to the Scientific Committee: Haim Brezis Constantine Dafermos Jerry Ericksen David Kinderlehrer for planning and implementing an exciting and stimulating year-long program. We espe­ cially thank the Program Organizers, Jerry Ericksen, David Kinderlehrer, Stephen Prager and Matthew Tirrell for organizing a workshop which brought together scientists and mathematicians in a variety of areas for a fruitful exchange of ideas. George R. Sell Hans Weinberger Preface Experiences with amorphous polymers have supplied much of the motivation for developing novel kinds of molecular theory, to try to deal with the more significant features of systems involving very large molecules with many degrees offreedom. Similarly, the observations of many unusual macroscopic phenomena has stimulated efforts to develop linear and nonlinear theories of viscoelasticity to describe them. In either event, we are confronted not with a well-established,
Pindex Book 1987
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0940-6573 ch was an integral part of the 1984-85 IMA program on CONTINUUM PHYSICS AND PARTIAL DIFFERENTIAL EQUATIONS We are grateful to the Scientific Committee: Haim Brezis Constantine Dafermos Jerry Ericksen David Kinderlehrer for planning and implementing an exciting and stimulating year-long program. We e
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Die Kondensation bei Dampfkraftmaschinenm out. In particular, we find coexistence of finite wave speeds and smoothing of the singularity. The degree of smoothing depends on the nature of the singularity in the viscoelastic memory function. A number of examples are discussed.
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,Die Rückkühlung des Kühlwassers,t above, that is, they have in common that their microscopic structure includes assemblages of very long, flexible chain molecules. One is led to seek an understanding of the behavior of these materials through an examination of the archetypical rubbery material, vulcanized natural rubber.
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Rohrleitungen und Absperrorgane,ation rate da/dn, r = -5, for tensile modulus, r = 0. The value of H. depends on the microscopic deformation process such that when bond rupture dominates, s is determined by s = 3r and when chain slippage dominates, s = r. Experimental evidence for these relations is presented.
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