Taylor

Partial Differential Equations III

Nonlinear Equations

3., Third Edition 2023

Springer

ISBN 978-3-031-33927-1

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Bibliografische Daten

Fachbuch

Buch. Hardcover

3., Third Edition 2023. 2023

65 s/w-Abbildungen, Bibliographien.

In englischer Sprache

Umfang: xxiii, 755 S.

Format (B x L): 15,5 x 23,5 cm

Gewicht: 1471

Verlag: Springer

ISBN: 978-3-031-33927-1

Weiterführende bibliografische Daten

Das Werk ist Teil der Reihe: Applied Mathematical Sciences; 117

auch verfügbar als eBook (PDF) für 58,84 €

Produktbeschreibung

The third of three volumes on partial differential equations, this is devoted to nonlinear PDE. It treats a number of equations of classical continuum mechanics, including relativistic versions, as well as various equations arising in differential geometry, such as in the study of minimal surfaces, isometric imbedding, conformal deformation, harmonic maps, and prescribed Gauss curvature. In addition, some nonlinear diffusion problems are studied. It also introduces such analytical tools as the theory of L^p Sobolev spaces, Holder spaces, Hardy spaces, and Morrey spaces, and also a development of Calderon-Zygmund theory and paradifferential operator calculus. The book is targeted at graduate students in mathematics and at professional mathematicians with an interest in partial differential equations, mathematical physics, differential geometry, harmonic analysis, and complex analysis. The third edition further expands the material by incorporating new theoremsand applications throughout the book, and by deepening connections and relating concepts across chapters. It includes new sections on rigid body motion, on probabilistic results related to random walks, on aspects of operator theory related to quantum mechanics, on overdetermined systems, and on the Euler equation for incompressible fluids. The appendices have also been updated with additional results, ranging from weak convergence of measures to the curvature of Kahler manifolds. Michael E. Taylor is a Professor of Mathematics at the University of North Carolina, Chapel Hill, NC. Review of first edition: “These volumes will be read by several generations of readers eager to learn the modern theory of partial differential equations of mathematical physics and the analysis in which this theory is rooted.” (Peter Lax, SIAM review, June 1998)

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Three volumes offer complete reference to PDE's Includes both theory and applications Lots of examples and exercises

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