Abstract Parabolic Evolution Equations and Lojasiewicz-Simon Inequality I: Abstract Theory
The classical Łojasiewicz gradient inequality (1963) was extended by Simon (1983) to the infinite-dimensional setting, now called the Łojasiewicz–Simon gradient inequality. This book presents a unified method to show asymptotic convergence of solutions to a stationary solution for abstract parabolic evolution equations of the gradient form by utilizing this Łojasiewicz–Simon gradient inequality.
In order to apply the abstract results to a wider class of concrete nonlinear parabolic equations, the usual Łojasiewicz–Simon inequality is extended, which is published here for the first time. In the second version, these abstract results are applied to reaction–diffusion equations with discontinuous coefficients, reaction–diffusion systems, and epitaxial growth equations. The results are also applied to the famous chemotaxis model, i.e., the Keller–Segel equations even for higher-dimensional ones.
"1139032853"
Abstract Parabolic Evolution Equations and Lojasiewicz-Simon Inequality I: Abstract Theory
The classical Łojasiewicz gradient inequality (1963) was extended by Simon (1983) to the infinite-dimensional setting, now called the Łojasiewicz–Simon gradient inequality. This book presents a unified method to show asymptotic convergence of solutions to a stationary solution for abstract parabolic evolution equations of the gradient form by utilizing this Łojasiewicz–Simon gradient inequality.
In order to apply the abstract results to a wider class of concrete nonlinear parabolic equations, the usual Łojasiewicz–Simon inequality is extended, which is published here for the first time. In the second version, these abstract results are applied to reaction–diffusion equations with discontinuous coefficients, reaction–diffusion systems, and epitaxial growth equations. The results are also applied to the famous chemotaxis model, i.e., the Keller–Segel equations even for higher-dimensional ones.
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Abstract Parabolic Evolution Equations and Lojasiewicz-Simon Inequality I: Abstract Theory

Abstract Parabolic Evolution Equations and Lojasiewicz-Simon Inequality I: Abstract Theory

by Atsushi Yagi
Abstract Parabolic Evolution Equations and Lojasiewicz-Simon Inequality I: Abstract Theory

Abstract Parabolic Evolution Equations and Lojasiewicz-Simon Inequality I: Abstract Theory

by Atsushi Yagi

eBook1st ed. 2021 (1st ed. 2021)

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Overview

The classical Łojasiewicz gradient inequality (1963) was extended by Simon (1983) to the infinite-dimensional setting, now called the Łojasiewicz–Simon gradient inequality. This book presents a unified method to show asymptotic convergence of solutions to a stationary solution for abstract parabolic evolution equations of the gradient form by utilizing this Łojasiewicz–Simon gradient inequality.
In order to apply the abstract results to a wider class of concrete nonlinear parabolic equations, the usual Łojasiewicz–Simon inequality is extended, which is published here for the first time. In the second version, these abstract results are applied to reaction–diffusion equations with discontinuous coefficients, reaction–diffusion systems, and epitaxial growth equations. The results are also applied to the famous chemotaxis model, i.e., the Keller–Segel equations even for higher-dimensional ones.

Product Details

ISBN-13: 9789811618963
Publisher: Springer-Verlag New York, LLC
Publication date: 05/31/2021
Series: SpringerBriefs in Mathematics
Sold by: Barnes & Noble
Format: eBook
File size: 5 MB

Table of Contents

1.Preliminary.- 2.Asymptotic Convergence.- 3.Extended Łojasiewicz–Simon Gradient Inequality.
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