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Nonlinear dynamics and chaos : proceedings of the Fourth Physics Summer School, the Australian National University, Canberra, Australia, 7-25 January 1991 / editors, R.L. Dewar & B.I. Henry.

By: Contributor(s): Material type: TextTextPublisher: Singapore ; New Jersey : World Scientific, c1992Copyright date: c1992Description: xv, 347 pages : illustrations ; 23 cmContent type:
  • text
Media type:
  • unmediated
Carrier type:
  • volume
ISBN:
  • 9810207700
Subject(s): DDC classification:
  • 530.15 20 D.R.N
Contents:
Overview of nonlinear dynamics and chaos, R.H.G. Helleman; Hamiltonian dynamics; area preserving maps; integrability and tori. stability; KAM theory and chaos, J.D. Meiss; fractal structures in thermal turbulence, I. Procaccia; bifurcation theory; averaging Melnikov's method; fractals and strange attractors, K.J. Palmer; dynamical systems; hyperbolicity; KAM theory; maps of a circle and of an annulus, W.A. Coppel; dynamics of plasmas an other many-body systems - statistical equations; wave interactions and turbulence, C. Oberman; application of nonlinear maps to r.f. discharges for plasma processing, and to digital phase locked loops in comunications, A.J. Lichtenberg; nonlinear waves in fluids; integrability, solitons and chaos; triad, quartet and Faraday resonances, R.H.J. Grimshaw; university classes in the transition to chaos; chaos in economics, management and finance, C.J. Thompson; and others.
Summary: Articles in this collection discuss basic concepts and modern developments in the field of nonlinear dynamics and chaos. This book is suitable for both theorists and experimentalists.
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Item type Current library Call number Status Date due Barcode
Books Books Main library A8 530.15 D.R.N (Browse shelf(Opens below)) Available 00002575

Includes bibliographical references.

Overview of nonlinear dynamics and chaos, R.H.G. Helleman; Hamiltonian dynamics; area preserving maps; integrability and tori. stability; KAM theory and chaos, J.D. Meiss; fractal structures in thermal turbulence, I. Procaccia; bifurcation theory; averaging Melnikov's method; fractals and strange attractors, K.J. Palmer; dynamical systems; hyperbolicity; KAM theory; maps of a circle and of an annulus, W.A. Coppel; dynamics of plasmas an other many-body systems - statistical equations; wave interactions and turbulence, C. Oberman; application of nonlinear maps to r.f. discharges for plasma processing, and to digital phase locked loops in comunications, A.J. Lichtenberg; nonlinear waves in fluids; integrability, solitons and chaos; triad, quartet and Faraday resonances, R.H.J. Grimshaw; university classes in the transition to chaos; chaos in economics, management and finance, C.J. Thompson; and others.

Articles in this collection discuss basic concepts and modern developments in the field of nonlinear dynamics and chaos. This book is suitable for both theorists and experimentalists.

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