Stochastic Processes in Polymeric Fluids Tools and Examples for Developing Simulation Algorithms

This book consists of two strongly interweaved parts: the mathematical theory of stochastic processes and its applications to molecular theories of polymeric fluids. The comprehensive mathematical background provided in the first part should be equally useful in many other branches of engineering an...

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Bibliographic Details
Main Author: Öttinger, Hans C.
Format: eBook
Language:English
Published: Berlin, Heidelberg Springer Berlin Heidelberg 1996, 1996
Edition:1st ed. 1996
Subjects:
Online Access:
Collection: Springer Book Archives -2004 - Collection details see MPG.ReNa
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245 0 0 |a Stochastic Processes in Polymeric Fluids  |h Elektronische Ressource  |b Tools and Examples for Developing Simulation Algorithms  |c by Hans C. Öttinger 
250 |a 1st ed. 1996 
260 |a Berlin, Heidelberg  |b Springer Berlin Heidelberg  |c 1996, 1996 
300 |a XXIV, 362 p. 3 illus  |b online resource 
505 0 |a 1 Stochastic Processes, Polymer Dynamics, and Fluid Mechanics -- 1.1 Approach to Kinetic Theory Models -- 1.2 Flow Calculation and Material Functions -- References -- I Stochastic Processes -- 2 Basic Concepts from Stochastics -- 3 Stochastic Calculus -- II Polymer Dynamics -- 4 Bead-Spring Models for Dilute Solutions -- 5 Models with Constraints -- 6 Reptation Models for Concentrated Solutions and Melts -- Landmark Papers and Books -- Solutions to Exercises -- References -- Author Index 
653 |a Condensed Matter Physics 
653 |a Thermodynamics 
653 |a Computational intelligence 
653 |a Polymers 
653 |a Computational Intelligence 
653 |a Chemistry, Technical 
653 |a Materials / Analysis 
653 |a Characterization and Analytical Technique 
653 |a Condensed matter 
653 |a Industrial Chemistry 
041 0 7 |a eng  |2 ISO 639-2 
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028 5 0 |a 10.1007/978-3-642-58290-5 
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082 0 |a 620.192 
520 |a This book consists of two strongly interweaved parts: the mathematical theory of stochastic processes and its applications to molecular theories of polymeric fluids. The comprehensive mathematical background provided in the first part should be equally useful in many other branches of engineering and the natural sciences. As a benefit from the second part one gains a more direct understanding of polymer dynamics, one can more easily identify exactly solvable models, and one can develop efficient computer simulation algorithms in a straightforward manner. In view of the many examples and exercises, on the one hand, and the numerous applications to problems from the front line of science, on the other hand, this volume may be used equally well as a basic textbook or as an up-to-date reference book