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A01=Albert C. J. Luo
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Two-dimensional Self and Product Cubic Systems, Vol. I: Self-linear and Crossing-quadratic Product Vector Field

English

By (author): Albert C. J. Luo

This book is the twelfth of 15 related monographs on Cubic Systems, discusses self and product cubic systems with a self-linear and crossing-quadratic product vector field. Equilibrium series with flow singularity are presented and the corresponding switching bifurcations are discussed. The volume explains how the equilibrium series with connected hyperbolic and hyperbolic-secant flows exist in such cubic systems, and that the corresponding switching bifurcations are obtained through the inflection-source and sink infinite-equilibriums. Finally, the author illustrates how, in such cubic systems, the appearing bifurcations include saddle-source (sink) for equilibriums and inflection-source and sink flows for the connected hyperbolic flows, and the third-order saddle, sink and source are the appearing and switching bifurcations for saddle-source (sink) with saddles, source and sink, and also for saddle, sink and source.

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A01=Albert C. J. LuoAge Group_UncategorizedAuthor_Albert C. J. Luoautomatic-updateCategory1=Non-FictionCategory=GPFCCategory=PBFCategory=PHFPCategory=TBJCOP=SwitzerlandDelivery_Pre-orderLanguage_EnglishPA=Not yet availablePrice_€100 and abovePS=Forthcomingsoftlaunch

Will deliver when available. Publication date 15 Oct 2024

Product Details
  • Dimensions: 155 x 235mm
  • Publication Date: 15 Oct 2024
  • Publisher: Springer International Publishing AG
  • Publication City/Country: Switzerland
  • Language: English
  • ISBN13: 9783031595813

About Albert C. J. Luo

Dr. Albert C. J. Luo is a Distinguished Research Professor at the Southern Illinois University Edwardsville in Edwardsville IL USA. Dr. Luo worked on Nonlinear Mechanics Nonlinear Dynamics and Applied Mathematics. He proposed and systematically developed: (i) the discontinuous dynamical system theory (ii) analytical solutions for periodic motions in nonlinear dynamical systems (iii) the theory of dynamical system synchronization (iv) the accurate theory of nonlinear deformable-body dynamics (v) new theories for stability and bifurcations of nonlinear dynamical systems. He discovered new phenomena in nonlinear dynamical systems. His methods and theories can help understanding and solving the Hilbert sixteenth problems and other nonlinear physics problems. The main results were scattered in 45 monographs in Springer Wiley Elsevier and World Scientific over 200 prestigious journal papers and over 150 peer-reviewed conference papers. 

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