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Abstract parabolic evolution equations and Lojasiewicz-Simon inequality.II,Applications
Record Type:
Electronic resources : Monograph/item
Title/Author:
Abstract parabolic evolution equations and Lojasiewicz-Simon inequality.by Atsushi Yagi.
remainder title:
Applications
Author:
Yagi, Atsushi.
Published:
Singapore :Springer Singapore :2021.
Description:
ix, 128 p. :ill., digital ;24 cm.
Contained By:
Springer Nature eBook
Subject:
Evolution equations.
Online resource:
https://doi.org/10.1007/978-981-16-2663-0
ISBN:
9789811626630
Abstract parabolic evolution equations and Lojasiewicz-Simon inequality.II,Applications
Yagi, Atsushi.
Abstract parabolic evolution equations and Lojasiewicz-Simon inequality.
II,Applications[electronic resource] /Applicationsby Atsushi Yagi. - Singapore :Springer Singapore :2021. - ix, 128 p. :ill., digital ;24 cm. - SpringerBriefs in mathematics,2191-8201. - SpringerBriefs in mathematics..
Preliminaries -- Review of Abstract Results -- Parabolic Equations -- Epitaxial Growth Model -- Chemotaxis Model.
This second volume continues the study on asymptotic convergence of global solutions of parabolic equations to stationary solutions by utilizing the theory of abstract parabolic evolution equations and the Łojasiewicz-Simon gradient inequality. In the first volume of the same title, after setting the abstract frameworks of arguments, a general convergence theorem was proved under the four structural assumptions of critical condition, Lyapunov function, angle condition, and gradient inequality. In this volume, with those abstract results reviewed briefly, their applications to concrete parabolic equations are described. Chapter 3 presents a discussion of semilinear parabolic equations of second order in general n-dimensional spaces, and Chapter 4 is devoted to treating epitaxial growth equations of fourth order, which incorporate general roughening functions. In Chapter 5 consideration is given to the Keller-Segel equations in one-, two-, and three-dimensional spaces. Some of these results had already been obtained and published by the author in collaboration with his colleagues. However, by means of the abstract theory described in the first volume, those results can be extended much more. Readers of this monograph should have a standard-level knowledge of functional analysis and of function spaces. Familiarity with functional analytic methods for partial differential equations is also assumed.
ISBN: 9789811626630
Standard No.: 10.1007/978-981-16-2663-0doiSubjects--Topical Terms:
199049
Evolution equations.
LC Class. No.: QA377.3 / .Y34 2021
Dewey Class. No.: 515.35
Abstract parabolic evolution equations and Lojasiewicz-Simon inequality.II,Applications
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This second volume continues the study on asymptotic convergence of global solutions of parabolic equations to stationary solutions by utilizing the theory of abstract parabolic evolution equations and the Łojasiewicz-Simon gradient inequality. In the first volume of the same title, after setting the abstract frameworks of arguments, a general convergence theorem was proved under the four structural assumptions of critical condition, Lyapunov function, angle condition, and gradient inequality. In this volume, with those abstract results reviewed briefly, their applications to concrete parabolic equations are described. Chapter 3 presents a discussion of semilinear parabolic equations of second order in general n-dimensional spaces, and Chapter 4 is devoted to treating epitaxial growth equations of fourth order, which incorporate general roughening functions. In Chapter 5 consideration is given to the Keller-Segel equations in one-, two-, and three-dimensional spaces. Some of these results had already been obtained and published by the author in collaboration with his colleagues. However, by means of the abstract theory described in the first volume, those results can be extended much more. Readers of this monograph should have a standard-level knowledge of functional analysis and of function spaces. Familiarity with functional analytic methods for partial differential equations is also assumed.
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