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Titlebook: Statistical Physics of Polymers; An Introduction Toshihiro Kawakatsu Textbook 2004 Springer-Verlag Berlin Heidelberg 2004 biopolymers.polym

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书目名称Statistical Physics of Polymers
副标题An Introduction
编辑Toshihiro Kawakatsu
视频video
概述Provides the basic knowledge on theoretical and statistical polymer physics.Includes supplementary material:
丛书名称Advanced Texts in Physics
图书封面Titlebook: Statistical Physics of Polymers; An Introduction Toshihiro Kawakatsu Textbook 2004 Springer-Verlag Berlin Heidelberg 2004 biopolymers.polym
描述This book is an introductory textbook on the statistical mechanics of poly­ mers and complex fluids aimed at senior undergraduate and graduate stu­ dents and non-specialist researchers who are starting research in this field. Modern statistical mechanics on polymers and complex fluids is based on many fields, such as chemical physics, statistical mechanics, quantum me­ chanics, stochastic processes, theory of phase transitions, hydrodynamics, rheology, and so on. This book provides an overview of the basic concepts and methods used in current research on the physics of polymers and complex fluids. Using simple but essential examples, we describe how to derive the physical properties of polymers theoretically, focusing on the structure and dynamics on mesoscopic scales. Here, the term ‘mesoscopic scales‘ means intermediate lengths and time scales between the microscopic atomic scale and the macroscopic scale. Properties on mesoscopic scales are the central issue of the physics of polymers and complex fluids, because these materials are well characterized by spatiotemporal structures on these scales, where we can extract universal properties that are independent of the microscopic de
出版日期Textbook 2004
关键词biopolymers; polymer; polymers; self-consistent field; statistical physics
版次1
doihttps://doi.org/10.1007/978-3-662-10024-0
isbn_softcover978-3-642-07786-9
isbn_ebook978-3-662-10024-0Series ISSN 1439-2674
issn_series 1439-2674
copyrightSpringer-Verlag Berlin Heidelberg 2004
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,Ginzburg—Landau Theory,zburg -Landau model. In this model, the free energy is expanded in a power series in the segment, density distribution, where the expansion coefficients are evaluated using the so-called random phase approximation. In this chapter, we discuss the essence of the random phase approximation and the Ginzburg Landau model.
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Macroscopic Viscoelastic Theory of Polymers,s chapter, we first formulate viscoelasticity on the macroscopic scale using hydrodynamic descriptions. We then introduce reptation theory, which is a coarse-grained molecular theory of viscoelastic behavior in dense entangled polymer liquids.
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Mesoscopic Structures and Self-Consistent Field Theory,ntroduce a further coarse-grained model based out the self-consistent field theory. The self-consistent field theory is a technique to calculate segment distributions and probability distributions of chain conformations within the mean field approximation. This technique is especially useful for qua
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,Ginzburg—Landau Theory,liser. A further simplification of the model can be made by approximating the conformational entropy and the free energy. A typical example is the Ginzburg -Landau model. In this model, the free energy is expanded in a power series in the segment, density distribution, where the expansion coefficien
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Macroscopic Viscoelastic Theory of Polymers,meric liquids possess characteristic features of both viscous fluids and elastic bodies. Such dynamic behavior is called viscoelasticity. The origin of the viscoelasticity of polymeric liquids is the complex internal structure of the polymer chains and mutual entanglements between the chains. In thi
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978-3-642-07786-9Springer-Verlag Berlin Heidelberg 2004
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