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      Kinetic models for polymers with inertial effects

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          Abstract

          Novel kinetic models for both Dumbbell-like and rigid-rod like polymers are derived, based on the probability distribution function \(f(t, x, n, \dot n)\) for a polymer molecule positioned at \(x\) to be oriented along direction \(n\) while embedded in a \(\dot n\) environment created by inertial effects. It is shown that the probability distribution function of the extended model, when converging, will lead to well accepted kinetic models when inertial effects are ignored such as the Doi models for rod like polymers, and the Finitely Extensible Non-linear Elastic (FENE) models for Dumbbell like polymers.

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          Most cited references26

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          DYNAMICAL PHENOMENA IN LIQUID-CRYSTALLINE MATERIALS

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            Existence and Uniqueness of Solutions to Fokker–Planck Type Equations with Irregular Coefficients

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              Well-posedness for the FENE dumbbell model of polymeric flows

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                Author and article information

                Journal
                10.3934/nhm.2009.4.625
                0901.1909

                Analysis,Condensed matter
                Analysis, Condensed matter

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