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Spring, David

Convex Integration Theory Solutions to the h-principle in geometry and topology (Kartoniert / Broschiert / Paperback)


Reihe: Modern Birkhäuser Classics

Springer Basel AG, Dezember 2010


213 S. - Sprache: Englisch - 241x156x20 mm Book

ISBN: 3034800592 EAN: 9783034800594

§1. Historical Remarks Convex Integration theory, ?rst introduced by M. Gromov [17], is one of three general methods in immersion-theoretic topology for solving a broad range of problems in geometry and topology. The other methods are: (i) Removal of Singularities, introduced by M. Gromov and Y. Eliashberg [8]; (ii) the covering homotopy method which, following M. Gromov's thesis [16], is also referred to as the method of sheaves. The covering homotopy method is due originally to S. Smale [36] who proved a crucial covering homotopy result in order to solve the classi?cation problem for immersions of spheres in Euclidean space. These general methods are not linearly related in the sense that succ- sive methods subsumed the previous methods. Each method has its own distinct foundation, based on an independent geometrical or analytical insight. Con- quently, each method has a range of applications to problems in topology that are best suited to its particular insight. For example, a distinguishing feature of ConvexIntegrationtheoryisthatitappliestosolveclosed relationsinjetspaces, including certain general classes of underdetermined non-linear systems of par- 1 tial di?erential equations. As a case of interest, the Nash-Kuiper C -isometric immersion theorem can be reformulated and proved using Convex Integration theory (cf. Gromov [18]). No such results on closed relations in jet spaces can be proved by means of the other two methods. On the other hand, many classical results in immersion-theoretic topology, such as the classi?cation of immersions, are provable by all three methods.


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Produktdetails

Comprehensive and systematic monograph on convex integration theory Indispensable to all interested in differential topology, symplectic topology and optimal control theory Addresses as well as researchers

Inhaltsverzeichnis

1 Introduction 2 Convex Hulls 3 Analytic Theory 4 Open Ample Relations in Spaces of 1-Jets5 Microfibrations 6 The Geometry of Jet spaces7 Convex Hull Extensions 8 Ample Relations 9 Systems of Partial Differential Equations10 Relaxation Theorem References Index Index of Notation

Über den Autor

David Spring is a Professor of mathematics at the Glendon College in Toronto, Canada.


ISBN 3-0348-0059-2

ISBN 978-3-0348-0059-4

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