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Stability of Motion of Nonautonomous Systems (Methods of Limiting Equations)

Continuing the strong tradition of functional analysis and stability theory for differential and integral equations already established by;

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Stability of Nonautonomous Differential Equations

This volume covers the stability of nonautonomous differential equations in Banach spaces in the presence of nonuniform hyperbolicity;

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Stability and Bifurcation Theory for Non-Autonomous Differential Equations

used to study the stability/bifurcation properties of bounded solutions and of attracting sets for nonautonomous differential and functional;

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Dichotomies and Stability in Nonautonomous Linear Systems

Linear nonautonomous equations arise as mathematical models in mechanics, chemistry, and biology. The investigation of bounded solutions to;

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Nonautonomous Dynamics

of nonautonomous evolutionary equations. The content is developed over six chapters, providing a thorough introduction to the techniques used in the;

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Nonautonomous Dynamics

of nonautonomous evolutionary equations. The content is developed over six chapters, providing a thorough introduction to the techniques used in the;

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Spectral Theory for Random and Nonautonomous Parabolic Equations and Applications

Providing a basic tool for studying nonlinear problems, Spectral Theory for Random and Nonautonomous Parabolic Equations and Applications;

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Spectral Theory for Random and Nonautonomous Parabolic Equations and Applications

Providing a basic tool for studying nonlinear problems, Spectral Theory for Random and Nonautonomous Parabolic Equations and Applications;

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Nonlinear Systems Stability Analysis

theorems and methods that are useful regarding qualitative properties of nonlinear systems and their solutions-system stability being the most;

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Nonlinear Systems Stability Analysis

theorems and methods that are useful regarding qualitative properties of nonlinear systems and their solutions-system stability being the most;

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Uncertain Dynamical Systems

contains new conditions of stability of unperturbed motion of the above-mentioned type of equations, along with some applications. Without assuming;

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Uncertain Dynamical Systems

contains new conditions of stability of unperturbed motion of the above-mentioned type of equations, along with some applications. Without assuming;

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New Methods For Chaotic Dynamics

This book presents a new theory on the transition to dynamical chaos for two-dimensional nonautonomous, and three-dimensional, many;

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Mechanics Of Nonlinear Systems With Internal Resonances, The

of equations of motion (together with the multiple scale method). Considered here are autonomous and nonautonomous discrete two-degree-of-freedom;

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Methods of Analytical Dynamics

dynamics, behavior of dynamical systems, geometric theory, stability of multi-degree-of-freedom autonomous and nonautonomous systems, and;

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Numerical Solutions for Partial Differential Equations

(natural and other) behave. The inherent suitability of PDEs to characterizing the nature, motion, and evolution of systems, has led to their wide;

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Numerical Solutions for Partial Differential Equations

(natural and other) behave. The inherent suitability of PDEs to characterizing the nature, motion, and evolution of systems, has led to their wide;

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Attractors Under Discretisation

of the aims of this book is to present new findings on the discretisation of dissipative nonautonomous dynamical systems that have been obtained;

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Nonlinear Dynamics

variety of nonautonomous systems that arise during the study of forced oscillatory motion. Topics include boundary value problems, connections to;

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Smooth And Nonsmooth High Dimensional Chaos And The Melnikov-type Methods

is devoted only to the analysis of three-dimensional systems (in the case of mechanics, they represent one-degree-of-freedom nonautonomous systems;

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General Linear Methods for Ordinary Differential Equations

encompasses the related concepts of existence and uniqueness theory, stability theory, and stiff differential equations and systems. In addition, a;

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Weakly Connected Nonlinear Systems

Weakly Connected Nonlinear Systems: Boundedness and Stability of Motion provides a systematic study on the boundedness and stability;

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Weakly Connected Nonlinear Systems

Weakly Connected Nonlinear Systems: Boundedness and Stability of Motion provides a systematic study on the boundedness and stability;

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Bifurcation Theory of Impulsive Dynamical Systems

discussing their applications. The primary contributions are a rigorous nonautonomous dynamical systems framework and analysis of nonlinear systems;

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Bifurcation Theory of Impulsive Dynamical Systems

discussing their applications. The primary contributions are a rigorous nonautonomous dynamical systems framework and analysis of nonlinear systems;

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Numerical Solution 3rd

equations, and includes the concomitant theoretical work on consistency, stability, and convergence. The new edition includes revised and greatly;

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