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91 Luo, Albert C. J Discretization and Implicit Mapping Dynamics I07463 2015 eBook  
92 Iordache, Octavian Self-Evolvable Systems I07335 2012 eBook  
93 In, Visarath International Conference on Theory and Application in Nonlinear Dynamics (ICAND 2012) I07270 2014 eBook  
94 Martinez-Guerra, Rafael Fault Detection and Diagnosis in Nonlinear Systems I07186 2014 eBook  
95 Anishchenko, Vadim S Deterministic Nonlinear Systems I07170 2014 eBook  
96 Gros, Claudius Complex and Adaptive Dynamical Systems I07070 2013 eBook  
97 Ludu, Andrei Nonlinear Waves and Solitons on Contours and Closed Surfaces I07047 2012 eBook  
98 Terhalle, Bernd Controlling Light in Optically Induced Photonic Lattices I06971 2011 eBook  
99 Bittihn, Philip Complex Structure and Dynamics of the Heart I06672 2015 eBook  
100 Nazarenko, Sergey Wave Turbulence I06621 2011 eBook  
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91.    
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TitleDiscretization and Implicit Mapping Dynamics
Author(s)Luo, Albert C. J
PublicationBerlin, Heidelberg, Springer Berlin Heidelberg, 2015.
DescriptionX, 310 p. 46 illus., 26 illus. in color : online resource
Abstract NoteThis unique book presents the discretization of continuous systems and implicit mapping dynamics of periodic motions to chaos in continuous nonlinear systems. The stability and bifurcation theory of fixed points in discrete nonlinear dynamical systems is reviewed, and the explicit and implicit maps of continuous dynamical systems are developed through the single-step and multi-step discretizations. The implicit dynamics of period-m solutions in discrete nonlinear systems are discussed. The book also offers a generalized??approach to finding??analytical and numerical solutions of stable and unstable periodic flows to chaos in nonlinear systems with/without time-delay. The bifurcation trees of periodic motions to chaos in the Duffing oscillator are shown as a sample problem, while the discrete Fourier series of periodic motions and chaos are also presented. The book offers a valuable resource for university students, professors, researchers and engineers in the fields of applied mathematics, physics, mechanics, control systems, and engineering
ISBN,Price9783662472750
Keyword(s)1. Applications of Nonlinear Dynamics and Chaos Theory 2. Difference and Functional Equations 3. DIFFERENCE EQUATIONS 4. DYNAMICAL SYSTEMS 5. DYNAMICS 6. EBOOK 7. EBOOK - SPRINGER 8. FUNCTIONAL EQUATIONS 9. STATISTICAL PHYSICS 10. VIBRATION 11. Vibration, Dynamical Systems, Control
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92.     
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TitleSelf-Evolvable Systems : Machine Learning in Social Media
Author(s)Iordache, Octavian
PublicationBerlin, Heidelberg, Springer Berlin Heidelberg, 2012.
DescriptionXXII, 278 p : online resource
Abstract NoteThis monograph presents key method to successfully manage the growing?? complexity of systems ??where conventional engineering and scientific methodologies and technologies based on learning and adaptability come to their limits and new ways are nowadays required. The transition from adaptable to evolvable and finally to self-evolvable systems is highlighted, self-properties such as self-organization, self-configuration, and self-repairing are introduced and challenges and limitations of the self-evolvable engineering systems are evaluated
ISBN,Price9783642288821
Keyword(s)1. Applications of Nonlinear Dynamics and Chaos Theory 2. COMPLEXITY 3. COMPUTATIONAL COMPLEXITY 4. Computational Intelligence 5. EBOOK 6. EBOOK - SPRINGER 7. STATISTICAL PHYSICS
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93.     
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TitleInternational Conference on Theory and Application in Nonlinear Dynamics (ICAND 2012)
Author(s)In, Visarath;Palacios, Antonio;Longhini, Patrick
PublicationCham, Springer International Publishing, 2014.
DescriptionXI, 341 p. 152 illus., 22 illus. in color : online resource
Abstract NoteA collection of different lectures presented by experts in the field of nonlinear science provides the reader with contemporary, cutting-edge, research works that bridge the gap between theory and device realizations of nonlinear phenomena. ?? Representative examples of topics covered include: chaos gates, social networks, communication, sensors, lasers, molecular motors, biomedical anomalies, stochastic resonance, nano-oscillators for generating microwave signals and related complex systems. A common theme among these and many other related lectures is to model, study, understand, and exploit the rich behavior exhibited by nonlinear systems to design and fabricate novel technologies with superior characteristics. Consider, for instance, the fact that a shark???s sensitivity to electric fields is 400 times more powerful than the most sophisticated electric-field sensor. In spite of significant advances in material properties, in many cases it remains a daunting task to duplicate the superior signal processing capabilities of most animals. Since nonlinear systems tend to be highly sensitive to perturbations when they occur near the onset of a bifurcation, there are also lectures on the general topic of bifurcation theory and on how to exploit such bifurcations for signal enhancements purposes. This manuscript will appeal to researchers interested in both theory and implementations of nonlinear systems. ??
ISBN,Price9783319029252
Keyword(s)1. Applications of Graph Theory and Complex Networks 2. Applications of Nonlinear Dynamics and Chaos Theory 3. COMPLEX SYSTEMS 4. COMPLEXITY 5. COMPUTATIONAL COMPLEXITY 6. EBOOK 7. EBOOK - SPRINGER 8. PHYSICS 9. STATISTICAL PHYSICS 10. SYSTEM THEORY
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94.     
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TitleFault Detection and Diagnosis in Nonlinear Systems : A Differential and Algebraic Viewpoint
Author(s)Martinez-Guerra, Rafael;Mata-Machuca, Juan Luis
PublicationCham, Springer International Publishing, 2014.
DescriptionXVII, 128 p. 31 illus., 11 illus. in color : online resource
Abstract NoteThe high reliability required in industrial processes has created the necessity of detecting abnormal conditions, called faults, while processes are operating. The term fault generically refers to any type of process degradation, or degradation in equipment performance because of changes in the process's physical characteristics, process inputs or environmental conditions. This book is about the fundamentals of fault detection and diagnosis in a variety of nonlinear systems which are represented by ordinary differential equations. The fault detection problem is approached from a differential algebraic viewpoint, using residual generators based upon high-gain nonlinear auxiliary systems (???observers???). A prominent role is played by the type of mathematical tools that will be used, requiring knowledge of differential algebra and differential equations. Specific theorems tailored to the needs of the problem-solving procedures are developed and proved. Applications to real-world problems, both with constant and time-varying faults, are made throughout the book and include electromechanical positioning systems, the Continuous Stirred Tank Reactor (CSTR), bioreactor models and belt drive systems, to name but a few
ISBN,Price9783319030470
Keyword(s)1. Applications of Nonlinear Dynamics and Chaos Theory 2. DYNAMICAL SYSTEMS 3. DYNAMICS 4. EBOOK 5. EBOOK - SPRINGER 6. Industrial and Production Engineering 7. Industrial engineering 8. Mathematical Applications in the Physical Sciences 9. MATHEMATICAL PHYSICS 10. Production engineering 11. STATISTICAL PHYSICS 12. VIBRATION 13. Vibration, Dynamical Systems, Control
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95.     
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TitleDeterministic Nonlinear Systems : A Short Course
Author(s)Anishchenko, Vadim S;Vadivasova, Tatyana E;Strelkova, Galina I
PublicationCham, Springer International Publishing, 2014.
DescriptionXIV, 294 p. 172 illus., 2 illus. in color : online resource
Abstract NoteThis text is a short yet complete course on nonlinear dynamics of deterministic systems. Conceived as a modular set of 15 concise lectures it reflects the many years of teaching experience by the authors.??The lectures treat in turn the fundamental aspects of the theory of dynamical systems, aspects of stability and bifurcations, the theory of deterministic chaos and attractor dimensions, as well as the elements of the theory of Poincare recurrences.Particular attention is paid to the analysis of the generation of periodic, quasiperiodic and chaotic self-sustained oscillations and to the issue of synchronization in such systems.?? This book is aimed at graduate students and non-specialist researchers with a background in physics, applied mathematics and engineering wishing to enter this exciting field of research
ISBN,Price9783319068718
Keyword(s)1. Applications of Nonlinear Dynamics and Chaos Theory 2. Classical and Continuum Physics 3. Continuum physics 4. DYNAMICAL SYSTEMS 5. DYNAMICS 6. EBOOK 7. EBOOK - SPRINGER 8. Mathematical Applications in the Physical Sciences 9. MATHEMATICAL PHYSICS 10. STATISTICAL PHYSICS 11. VIBRATION 12. Vibration, Dynamical Systems, Control
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96.     
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TitleComplex and Adaptive Dynamical Systems : A Primer
Author(s)Gros, Claudius
PublicationBerlin, Heidelberg, Springer Berlin Heidelberg, 2013.
DescriptionXIV, 345 p. 124 illus., 63 illus. in color : online resource
Abstract NoteComplex system theory is rapidly developing and gaining importance, providing tools and concepts central to our modern understanding of emergent phenomena. This primer offers an introduction to this area together with detailed coverage of the mathematics involved. All calculations are presented step by step and are straightforward to follow. This new third edition comes with new material, figures and exercises. Network theory, dynamical systems and information theory, the core of modern complex system sciences, are developed in the first three chapters, covering basic concepts and phenomena like small-world networks, bifurcation theory and information entropy. Further chapters use a modular approach to address the most important concepts in complex system sciences, with the emergence and self-organization playing a central role. Prominent examples are self-organized criticality in adaptive systems, life at the edge of chaos, hypercycles and coevolutionary avalanches, synchronization phenomena, absorbing phase transitions and the cognitive system approach to the brain. Technical course prerequisites are the standard mathematical tools for an advanced undergraduate course in the natural sciences or engineering. Each chapter comes with exercises and suggestions for further reading - solutions to the exercises are provided in the last chapter. From the reviews of previous editions: This is a very interesting introductory book written for a broad audience of graduate students in natural sciences and engineering. It can be equally well used both for teaching and self-education. Very well structured and every topic is illustrated by simple and motivating examples. This is a true guidebook to the world of complex nonlinear phenomena. (Ilya Pavlyukevich, Zentralblatt MATH, Vol. 1146, 2008) "Claudius Gros's Complex and Adaptive Dynamical Systems: A Primer is a welcome addition to the literature. . A particular strength of the book is its emphasis on analytical techniques for studying complex systems. (David P. Feldman, Physics Today, July, 2009)
ISBN,Price9783642365867
Keyword(s)1. Applications of Graph Theory and Complex Networks 2. Applications of Nonlinear Dynamics and Chaos Theory 3. COMPLEX SYSTEMS 4. COMPLEXITY 5. COMPUTATIONAL COMPLEXITY 6. Data-driven Science, Modeling and Theory Building 7. EBOOK 8. EBOOK - SPRINGER 9. ECONOPHYSICS 10. PHYSICS 11. Sociophysics 12. STATISTICAL PHYSICS 13. SYSTEM THEORY
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97.     
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TitleNonlinear Waves and Solitons on Contours and Closed Surfaces
Author(s)Ludu, Andrei
PublicationBerlin, Heidelberg, Springer Berlin Heidelberg, 2012.
DescriptionXVIII, 490 p : online resource
Abstract NoteThis volume is an introduction to nonlinear waves and soliton theory in the special environment of compact spaces such a closed curves and surfaces and other domain contours. It assumes familiarity with basic soliton theory and nonlinear dynamical systems. The first part of the book introduces the mathematical concept required for treating the manifolds considered, providing relevant notions from topology and differential geometry. An introduction to the theory of motion of curves and surfaces - as part of the emerging field of contour dynamics - is given. The second and third parts discuss the modeling of various physical solitons on compact systems, such as filaments, loops and drops made of almost incompressible materials thereby intersecting with a large number of physical disciplines from hydrodynamics to compact object astrophysics. This book is intended for graduate students and researchers in mathematics, physics and engineering. This new edition has been thoroughly revised, expanded and updated
ISBN,Price9783642228957
Keyword(s)1. Amorphous substances 2. Applications of Nonlinear Dynamics and Chaos Theory 3. Complex fluids 4. DIFFERENTIAL GEOMETRY 5. EBOOK 6. EBOOK - SPRINGER 7. Fluid- and Aerodynamics 8. FLUIDS 9. Interfaces (Physical sciences) 10. Mathematical Methods in Physics 11. PHYSICS 12. Soft and Granular Matter, Complex Fluids and Microfluidics 13. STATISTICAL PHYSICS 14. Surface and Interface Science, Thin Films 15. Surfaces (Physics) 16. THIN FILMS
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98.     
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TitleControlling Light in Optically Induced Photonic Lattices
Author(s)Terhalle, Bernd
PublicationBerlin, Heidelberg, Springer Berlin Heidelberg, 2011.
DescriptionX, 106 p : online resource
Abstract NoteDiscrete periodic structures play an important role in physics, and have opened up an exciting new area of investigation in recent years. Questions relating to the control of light in such structures still represent a major challenge. It is this highly active field that is adressed in the present thesis. Using the model system of a photorefractive nonlinearity that allows one to simultaneously create and control photonic lattices by light, the author obtains a comprehensive picture of the control of nonlinear and quantum optics phenomena in photonic lattices. He describes and demonstrates experimentally for the first time resonant transitions in two-dimensional hexagonal lattices, including Rabi oscillations and Landau-Zener tunneling, as well as the direct control and exploitation of these transitions. A particular highlight of this thesis is the study of soliton-cluster switching and control of Zener tunneling
ISBN,Price9783642166471
Keyword(s)1. Applications of Nonlinear Dynamics and Chaos Theory 2. EBOOK 3. EBOOK - SPRINGER 4. LASERS 5. Nanoscale science 6. Nanoscale Science and Technology 7. NANOSCIENCE 8. Nanostructures 9. Optics, Lasers, Photonics, Optical Devices 10. PHOTONICS 11. QUANTUM OPTICS 12. STATISTICAL PHYSICS
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99.     
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TitleComplex Structure and Dynamics of the Heart
Author(s)Bittihn, Philip
PublicationCham, Springer International Publishing, 2015.
DescriptionXV, 204 p. 69 illus., 47 illus. in color : online resource
Abstract NoteThis award-winning thesis investigates the mechanisms underlying cardiac arrhythmia development and termination from an entirely new perspective. By viewing the heart as a complex system, the author uses theoretical tools from nonlinear dynamics combined with numerical simulations and experiments to achieve insights into the relationship between its structure and dynamics, thereby paving the way towards innovative low-energy defibrillation strategies. The work tackles, among other things: the effect of substrate heterogeneity on the spatial-temporal dynamics of cardiac arrhythmias and ways in which weak pulsed electric fields can be used to control these dynamics in heterogeneous cardiac tissue. The long-term vision of this research is to replace the current strategy of applying painful and sometimes tissue damaging electric shock ??? currently the only reliable way to terminate life-threatening fibrillation ??? by a more subtle but equally effective intervention. The book maps out a number of promising research directions for biophysicists and medical researchers working on the origins and treatment of cardiac arrhythmias
ISBN,Price9783319122328
Keyword(s)1. Applications of Nonlinear Dynamics and Chaos Theory 2. Biological and Medical Physics, Biophysics 3. BIOLOGICAL PHYSICS 4. BIOPHYSICS 5. CARDIOLOGY 6. EBOOK 7. EBOOK - SPRINGER 8. Numerical and Computational Physics, Simulation 9. PHYSICS 10. STATISTICAL PHYSICS
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100.    
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TitleWave Turbulence
Author(s)Nazarenko, Sergey
PublicationBerlin, Heidelberg, Springer Berlin Heidelberg, 2011.
DescriptionXVI, 279 p : online resource
Abstract NoteWave Turbulence refers to the statistical theory of weakly nonlinear dispersive waves. There is a wide and growing spectrum of physical applications, ranging from sea waves, to plasma waves, to superfluid turbulence, to nonlinear optics and Bose-Einstein condensates. Beyond the fundamentals the book thus also covers new developments such as the interaction of random waves with coherent structures (vortices, solitons, wave breaks), inverse cascades leading to condensation and the transitions between weak and strong turbulence, turbulence intermittency as well as finite system size effects, such as ???frozen??? turbulence, discrete wave resonances and avalanche-type energy cascades. This book is an outgrow of several lectures courses held by the author and, as a result, written and structured rather as a graduate text than a monograph, with many exercises and solutions offered along the way. The present compact description primarily addresses students and non-specialist researchers wishing to enter and work in this field
ISBN,Price9783642159428
Keyword(s)1. Applications of Nonlinear Dynamics and Chaos Theory 2. EBOOK 3. EBOOK - SPRINGER 4. Engineering Fluid Dynamics 5. FLUID MECHANICS 6. GEOPHYSICS 7. Geophysics and Environmental Physics 8. Geophysics/Geodesy 9. STATISTICAL PHYSICS
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I06621     On Shelf    

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