Nonlocal Continuum Limits of p-Laplacian Problems on Graphs - Imad El Bouchairi, Jalal Fadili, Yosra Hafiene, Abderrahim Elmoataz

Nonlocal Continuum Limits of p-Laplacian Problems on Graphs

Buch | Softcover
75 Seiten
2023
Cambridge University Press (Verlag)
978-1-009-32785-5 (ISBN)
21,20 inkl. MwSt
Considers fully discretized p-Laplacian problems on graphs. The motivation of nonlocal continuum limits comes from the quest of understanding collective dynamics in large ensembles of interacting particles, which is a fundamental problem in nonlinear science, with applications ranging from biology to physics, chemistry and computer science.
In this Element, the authors consider fully discretized p-Laplacian problems (evolution, boundary value and variational problems) on graphs. The motivation of nonlocal continuum limits comes from the quest of understanding collective dynamics in large ensembles of interacting particles, which is a fundamental problem in nonlinear science, with applications ranging from biology to physics, chemistry and computer science. Using the theory of graphons, the authors give a unified treatment of all the above problems and establish the continuum limit for each of them together with non-asymptotic convergence rates. They also describe an algorithmic framework based proximal splitting to solve these discrete problems on graphs.

1. Introduction; 2. Mathematical Background; 3. Nonlocal p-Laplacian evolution problem on graphs; 4. Nonlocal p-Laplacian variational problem on graphs; 5. Nonlocal p-Laplacian Dirichlet problem on graphs; 6. Algorithmic framework based on proximal splitting; References.

Erscheinungsdatum
Reihe/Serie Elements in Non-local Data Interactions: Foundations and Applications
Zusatzinfo Worked examples or Exercises
Verlagsort Cambridge
Sprache englisch
Maße 152 x 229 mm
Gewicht 91 g
Themenwelt Mathematik / Informatik Informatik Theorie / Studium
Mathematik / Informatik Mathematik Analysis
Mathematik / Informatik Mathematik Angewandte Mathematik
ISBN-10 1-009-32785-2 / 1009327852
ISBN-13 978-1-009-32785-5 / 9781009327855
Zustand Neuware
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