Bifurcation and Chaos in Discontinuous and Continuous Systems (e-bog) af Feckan, Michal
Feckan, Michal (forfatter)

Bifurcation and Chaos in Discontinuous and Continuous Systems e-bog

875,33 DKK (inkl. moms 1094,16 DKK)
&quote;Bifurcation and Chaos in Discontinuous and Continuous Systems&quote; provides rigorous mathematical functional-analytical tools for handling chaotic bifurcations along with precise and complete proofs together with concrete applications presented by many stimulating and illustrating examples. A broad variety of nonlinear problems are studied involving difference equations, ordinary and p...
E-bog 875,33 DKK
Forfattere Feckan, Michal (forfatter)
Forlag Springer
Udgivet 30 maj 2011
Genrer Cybernetics and systems theory
Sprog English
Format pdf
Beskyttelse LCP
ISBN 9783642182693
"e;Bifurcation and Chaos in Discontinuous and Continuous Systems"e; provides rigorous mathematical functional-analytical tools for handling chaotic bifurcations along with precise and complete proofs together with concrete applications presented by many stimulating and illustrating examples. A broad variety of nonlinear problems are studied involving difference equations, ordinary and partial differential equations, differential equations with impulses, piecewise smooth differential equations, differential and difference inclusions, and differential equations on infinite lattices as well.This book is intended for mathematicians, physicists, theoretically inclined engineers and postgraduate students either studying oscillations of nonlinear mechanical systems or investigating vibrations of strings and beams, and electrical circuits by applying the modern theory of bifurcation methods in dynamical systems.Dr. Michal Feckan is a Professor at the Department of Mathematical Analysis and Numerical Mathematics on the Faculty of Mathematics, Physics and Informatics at the Comenius University in Bratislava, Slovakia. He is working on nonlinear functional analysis, bifurcation theory and dynamical systems with applications to mechanics and vibrations.