Well-posed nonlinear problems a study of mathematical models of contact

Part I An Abstract Well-posedness Concept -- Nonlinear Problems and Their Solvability -- Tykhonov Triples and Associate Well-posedness Concept -- Part II Relevant Examples of Well-posed Problems -- Fixed Point Problems -- Variational Inequalities -- Variational-hemivariational Inequalities -- Inclus...

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1. Verfasser: Sofonea, Mircea (VerfasserIn)
Format: UnknownFormat
Sprache:eng
Veröffentlicht: Cham Birkhäuser 2023
Schriftenreihe:Advances in mechanics and mathematics volume 50
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Zusammenfassung:Part I An Abstract Well-posedness Concept -- Nonlinear Problems and Their Solvability -- Tykhonov Triples and Associate Well-posedness Concept -- Part II Relevant Examples of Well-posed Problems -- Fixed Point Problems -- Variational Inequalities -- Variational-hemivariational Inequalities -- Inclusions and Sweeping Processes -- Optimal Control and Optimization -- Part III Well-posed Contact Problems -- Preliminaries of Contact Mechanics -- Well-posed Static Contact Problems. Well-posed Quasistatic Contact Problems.
This monograph presents an original method to unify the mathematical theories of well-posed problems and contact mechanics. The author uses a new concept called the Tykhonov triple to develop a well-posedness theory in which every convergence result can be interpreted as a well-posedness result. This will be useful for studying a wide class of nonlinear problems, including fixed-point problems, inequality problems, and optimal control problems. Another unique feature of the manuscript is the unitary treatment of mathematical models of contact, for which new variational formulations and convergence results are presented. Well-Posed Nonlinear Problems will be a valuable resource for PhD students and researchers studying contact problems. It will also be accessible to interested researchers in related fields, such as physics, mechanics, engineering, and operations research.
Beschreibung:Literaturverzeichnis: Seite 389-399 und Index
Beschreibung:xviii, 405 Seiten
ISBN:9783031414152
978-3-031-41415-2