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The mesoscopic theory of polymer dynamics
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The mesoscopic theory of polymer dynamics

Author: Vladimir N Pokrovskii
Publisher: Dordrecht ; Boston : Kluwer Academic, ©2000.
Edition/Format:   Book : EnglishView all editions and formats
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Material Type: Internet resource
Document Type: Book, Internet Resource
All Authors / Contributors: Vladimir N Pokrovskii
ISBN: 0792366824 9780792366829
OCLC Number: 45100401
Description: xiii, 231 p. : ill. ; 25 cm.
Contents: Introduction: Macromolecular Systems in Equilibrium --
Microscopic Models of a Macromolecule --
Bead-and-Spring Model --
Normal Co-Ordinates --
Excluded-Volume Effects --
Macromolecules in Solvent --
Weakly-Coupled Macromolecules --
The Elasticity of Polymer Networks --
Crystalline and Glassy Systems --
Dynamics of a Macromolecule in a Viscous Liquid --
Equation of Macromolecular Dynamics --
Hydrodynamic Interactions inside a Macromolecular Coil --
Resistance-Drag Coefficient of a Macromolecular Coil --
Effective Resistance-Drag Coefficient of a Particle --
Intramolecular Friction --
Linear Modes --
The Moments of Linear Modes --
Dynamics of a Macromolecule in an Entangled System --
Many-Chain Problem --
Single-Chain Problem --
Heuristic Speculations for the Memory Functions --
Dynamics of a Reptating Macromolecule --
Low-Frequency Modes for Weakly-Coupled Macromolecules --
Modes of Motion in Linear Approximation --
Correlation Functions --
Relaxation of the Macromolecular Coil --
The Localisation Effect --
Mobility of a Macromolecule --
The Localisation of a Macromolecule --
The Mobility of a Macromolecule through Reptation --
Quasi-Elastic Neutron Scattering --
The Slowest Relaxation Processes --
The Fundamental Dynamical Parameters --
Linear Viscoelasticity --
Stresses in the Flow System --
Macromolecules in a Viscous Liquid --
Macromolecules in a Viscoelastic Liquid --
Dynamic Modulus and Relaxation Branches --
Self-Consistency of the Mesoscopic Approach --
Modulus of Elasticity and the Intermediate Length.
Responsibility: by Vladimir N. Pokrovskii.
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