Geometric Theory of Discrete Nonautonomous Dynamical Systems von Christian Pötzsche (2010, Taschenbuch)

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Nonautonomous dynamical systems provide a mathematical framework for temporally changing phenomena, where the law of evolution varies in time due to seasonal, modulation, controlling or even random effects. Our goal is to provide an approach to the corresponding geometric theory of nonautonomous discrete dynamical systems in infinite-dimensional spaces by virtue of 2-parameter semigroups (processes). These dynamical systems are generated by implicit difference equations, which explicitly depend on time. Compactness and dissipativity conditions are provided for such problems in order to have attractors using the natural concept of pullback convergence. Concerning a necessary linear theory, our hyperbolicity concept is based on exponential dichotomies and splittings. This concept is in turn used to construct nonautonomous invariant manifolds, so-called fiber bundles, and deduce linearization theorems. The results are illustrated using temporal and full discretizations of evolutionary differential equations.

Produktkennzeichnungen

ISBN-103642142575
ISBN-139783642142574
eBay Product ID (ePID)162680919

Produkt Hauptmerkmale

VerlagSpringer-Verlag Gmbh, Springer Berlin
Erscheinungsjahr2010
Anzahl der SeitenXxiv Seiten
PublikationsnameGeometric Theory of Discrete Nonautonomous Dynamical Systems
SpracheEnglisch
ProduktartLehrbuch
AutorChristian Pötzsche
ReiheLecture Notes in Mathematics
FormatTaschenbuch

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HörbuchNo
Nummer Innerhalb der Serie2002
Item Height2cm
Item Length23cm
Item Weight632g
Item Width15cm

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