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A Mathematical Modeling Approach fro...
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Macau, Elbert E. N.
A Mathematical Modeling Approach from Nonlinear Dynamics to Complex Systems
紀錄類型:
書目-語言資料,印刷品 : Monograph/item
正題名/作者:
A Mathematical Modeling Approach from Nonlinear Dynamics to Complex Systems / edited by Elbert E. N. Macau.
其他作者:
Macau, Elbert E. N.
面頁冊數:
VIII, 228 p. 79 illus., 48 illus. in color.online resource. :
Contained By:
Springer Nature eBook
標題:
Computational complexity. -
電子資源:
https://doi.org/10.1007/978-3-319-78512-7
ISBN:
9783319785127
A Mathematical Modeling Approach from Nonlinear Dynamics to Complex Systems
A Mathematical Modeling Approach from Nonlinear Dynamics to Complex Systems
[electronic resource] /edited by Elbert E. N. Macau. - 1st ed. 2019. - VIII, 228 p. 79 illus., 48 illus. in color.online resource. - Nonlinear Systems and Complexity,222195-9994 ;. - Nonlinear Systems and Complexity,12.
Preface -- An overview of the generalized Gardner equation: symmetry groups and conservation laws; Maria S. Bruzon -- On symmetries and conservation laws for a generalized Fisher equation; Maria Luz Gandarias, Maria Rosa -- From Complex Systems theory to Disasters Risk Reduction Management; Leonardo B. L. Santos, Luciana R. Londe, Tiago Carvalho, Daniel S. Menasche -- Fireflies: a paradigm in synchronization; G. M. Ramírez-Ávila, Juergen Kurths, Jean-Louis Deneubourg -- An investigation of the chaotic transient for a boundary crisis in the Fermi-Ulam model; Edson D. Leonel, Murilo Ferrioli Marques -- Tunable orbits influence in a driven stadium-like billiard; Andre Livorati -- Transport barriers in nonintegrable dynamical systems; Marisa Roberto -- Barriers in Two-dimensional and Multidimensional Systems; Erico Rempel, Abraham C. –L Chian -- New Trends in Chaos-based Communications and Signal Processing; Marcio Eisencraft -- Complex Networks and Centrality; Francisco Rodrigues -- Characterizing flows by complex network methods; Reik Donner.
This book collects recent developments in nonlinear and complex systems. It provides up-to-date theoretic developments and new techniques based on a nonlinear dynamical systems approach that can be used to model and understand complex behavior in nonlinear dynamical systems. It covers symmetry groups, conservation laws, risk reduction management, barriers in Hamiltonian systems, and synchronization and chaotic transient. Illustrating mathematical modeling applications to nonlinear physics and nonlinear engineering, the book is ideal for academic and industrial researchers concerned with machinery and controls, manufacturing, and controls. · Introduces new concepts for understanding and modeling complex systems; · Explains risk reduction management in complex systems; · Examines the symmetry group approach to understanding complex systems; · Illustrates the relation between transient chaos and crises.
ISBN: 9783319785127
Standard No.: 10.1007/978-3-319-78512-7doiSubjects--Topical Terms:
527777
Computational complexity.
LC Class. No.: QA267.7
Dewey Class. No.: 620
A Mathematical Modeling Approach from Nonlinear Dynamics to Complex Systems
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Preface -- An overview of the generalized Gardner equation: symmetry groups and conservation laws; Maria S. Bruzon -- On symmetries and conservation laws for a generalized Fisher equation; Maria Luz Gandarias, Maria Rosa -- From Complex Systems theory to Disasters Risk Reduction Management; Leonardo B. L. Santos, Luciana R. Londe, Tiago Carvalho, Daniel S. Menasche -- Fireflies: a paradigm in synchronization; G. M. Ramírez-Ávila, Juergen Kurths, Jean-Louis Deneubourg -- An investigation of the chaotic transient for a boundary crisis in the Fermi-Ulam model; Edson D. Leonel, Murilo Ferrioli Marques -- Tunable orbits influence in a driven stadium-like billiard; Andre Livorati -- Transport barriers in nonintegrable dynamical systems; Marisa Roberto -- Barriers in Two-dimensional and Multidimensional Systems; Erico Rempel, Abraham C. –L Chian -- New Trends in Chaos-based Communications and Signal Processing; Marcio Eisencraft -- Complex Networks and Centrality; Francisco Rodrigues -- Characterizing flows by complex network methods; Reik Donner.
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