Narrow your search

Library

Odisee (2)

Thomas More Kempen (2)

Thomas More Mechelen (2)

UCLL (2)

VIVES (2)

KU Leuven (1)

LUCA School of Arts (1)

UGent (1)

ULB (1)

ULiège (1)

More...

Resource type

book (2)


Language

English (2)


Year
From To Submit

2020 (1)

2014 (1)

Listing 1 - 2 of 2
Sort by

Book
Fractional-in-time semilinear parabolic equations and applications
Authors: ---
ISBN: 3030450430 3030450422 Year: 2020 Publisher: Cham, Switzerland : Springer,

Loading...
Export citation

Choose an application

Bookmark

Abstract

This book provides a unified analysis and scheme for the existence and uniqueness of strong and mild solutions to certain fractional kinetic equations. This class of equations is characterized by the presence of a nonlinear time-dependent source, generally of arbitrary growth in the unknown function, a time derivative in the sense of Caputo and the presence of a large class of diffusion operators. The global regularity problem is then treated separately and the analysis is extended to some systems of fractional kinetic equations, including prey-predator models of Volterra–Lotka type and chemical reactions models, all of them possibly containing some fractional kinetics. Besides classical examples involving the Laplace operator, subject to standard (namely, Dirichlet, Neumann, Robin, dynamic/Wentzell and Steklov) boundary conditions, the framework also includes non-standard diffusion operators of "fractional" type, subject to appropriate boundary conditions. This book is aimed at graduate students and researchers in mathematics, physics, mathematical engineering and mathematical biology whose research involves partial differential equations. .


Book
Evolution equations with a complex spatial variable
Authors: --- ---
ISBN: 9814590606 9789814590600 9789814590594 9814590592 Year: 2014 Publisher: [Hackensack] New Jersey

Loading...
Export citation

Choose an application

Bookmark

Abstract

This book investigates several classes of partial differential equations of real time variable and complex spatial variables, including the heat, Laplace, wave, telegraph, Burgers, Black-Merton-Scholes, Schrödinger and Korteweg-de Vries equations. The complexification of the spatial variable is done by two different methods. The first method is that of complexifying the spatial variable in the corresponding semigroups of operators. In this case, the solutions are studied within the context of the theory of semigroups of linear operators. It is also interesting to observe that these solutions p

Listing 1 - 2 of 2
Sort by