Description: Dynamics of One-Dimensional Maps Please note: this item is printed on demand and will take extra time before it can be dispatched to you (up to 20 working days). Author(s): A.N. Sharkovsky, S.F. Kolyada, A.G. Sivak, V.V. Fedorenko Format: Paperback Publisher: Springer, Netherlands Imprint: Springer ISBN-13: 9789048148462, 978-9048148462 Synopsis maps whose topological entropy is equal to zero ([url] maps that have only cyeles of pe 2 riods 1,2,2 , ... ) are studied in detail and elassified. Various topological aspects of the dynamics of unimodal maps are studied in Chap ter 5. We analyze the distinctive features of the limiting behavior of trajectories of smooth maps. In particular, for some elasses of smooth maps, we establish theorems on the number of sinks and study the problem of existence of wandering intervals. In Chapter 6, for a broad elass of maps, we prove that almost all points (with respect to the Lebesgue measure) are attracted by the same sink. Our attention is mainly focused on the problem of existence of an invariant measure absolutely continuous with respect to the Lebesgue measure. We also study the problem of Lyapunov stability of dynamical systems and determine the measures of repelling and attracting invariant sets. The problem of stability of separate trajectories under perturbations of maps and the problem of structural stability of dynamical systems as a whole are discussed in Chap ter 7. In Chapter 8, we study one-parameter families of maps. We analyze bifurcations of periodic trajectories and properties of the set of bifurcation values of the parameter, in eluding universal properties such as Feigenbaum universality.
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Book Title: Dynamics of One-Dimensional Maps
Item Height: 235 mm
Item Width: 155 mm
Series: Mathematics and Its Applications
Author: A.G. Sivak, A.N. Sharkovsky, S.F. Kolyada, V.V. Fedorenko
Publication Name: Dynamics of One-Dimensional Maps
Format: Paperback
Language: English
Publisher: Springer
Subject: Mathematics
Publication Year: 2010
Type: Textbook
Item Weight: 427 g
Number of Pages: 262 Pages