Buch
A³N²M: Approximation, Applications, and Analysis of Nonlocal, Nonlinear Models
-Approximation, Applications, and Analysis of Nonlocal, Nonlinear Problems-Tadele Mengesha; Abner Salgado (Hrsg.)
149,79
EUR
Lieferzeit 12-13 Tage
Übersicht
Verlag | : | Springer International Publishing |
Buchreihe | : | The IMA Volumes in Mathematics and its Applications |
Sprache | : | Englisch |
Erschienen | : | 15. 09. 2023 |
Seiten | : | 280 |
Einband | : | Gebunden |
Höhe | : | 235 mm |
Breite | : | 155 mm |
ISBN | : | 9783031340888 |
Sprache | : | Englisch |
Illustrationen | : | XX, 280 p. 25 illus. in color. |
Autorinformation
Tadele Mengesha: Tadele Mengesha is a professor of mathematics at the University of Tennessee, Knoxville. He obtained his PhD in Mathematics in 2007 from Temple University. His main area of research is applied analysis with particular interest in regularity theory for solutions of partial differential and integral equations, asymptotic analysis, and calculus of variations.Abner J. Salgado: Abner J. Salgado is a professor of mathematics at the University of Tennessee, Knoxville. He obtained his PhD in Mathematics in 2010 from Texas A&M University. His main area of research is the numerical analysis of nonlinear partial differential equations, and related questions.
Inhaltsverzeichnis
CTRW approximations for fractional equations with variable order (Kolokoltsov).- Fractional Elliptic Problems on Lipschitz Domains: Regularity and Approximation (Borthagaray).- Regularity estimates and open problems in kinetic equations (Silvestre).- An optimization-based strategy for peridynamic-FEM coupling and for the prescription of nonlocal boundary conditions (Littlewood).- Nonlocal diffusion models with consistent local and fractional limits (Du).- A one-dimensional symmetric force-based blending method for atomistic-to-continuum coupling (Li).- A note on estimates of level sets and their role in demonstrating regularity of solutions to nonlocal double phase equations (Mengesha).- An overview of Almost Minimizers of Bernoulli-Type Functionals (Garcia).