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Geometric Numerical Integration

and problems with highly oscillatory solutions. It presents a theory of symplectic and symmetric methods, which include various specially;

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Geometric Numerical Integration

and problems with highly oscillatory solutions. It presents a theory of symplectic and symmetric methods, which include various specially;

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Recent Developments in Structure-Preserving Algorithms for Oscillatory Differential Equations

. It systematically describes the latest advances in the development of structure-preserving integrators for oscillatory differential equations;

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Recent Developments in Structure-Preserving Algorithms for Oscillatory Differential Equations

. It systematically describes the latest advances in the development of structure-preserving integrators for oscillatory differential equations;

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Structure-Preserving Algorithms for Oscillatory Differential Equations

Structure-Preserving Algorithms for Oscillatory Differential Equations describes a large number of highly effective and efficient structure;

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Structure-Preserving Algorithms for Oscillatory Differential Equations

Structure-Preserving Algorithms for Oscillatory Differential Equations describes a large number of highly effective and efficient structure;

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A Concise Introduction to Geometric Numerical Integration

, physics, astronomy, and chemistry who are already familiar with numerical tools for solving differential equations. It also offers a bridge from;

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Oscillation Theory for Functional Differential Equations

Examines developments in the oscillatory and nonoscillatory properties of solutions for functional differential equations, presenting basic;

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Recent Studies in Differential Equations

differential equations with several delays of one form are studied. In addition, some sufficient conditions for the oscillation of solutions to the;

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Ordinary Differential Equations

valuable to the pure mathematician as the fine treatment of the equations of Legendre, Bessel, and Mathieu, the conditions for the oscillatory;

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An Introduction to Differential Equations and Their Applications

explanations that appeal to readers' physical and geometric intuition.Starting with an introduction to differential equations, the text proceeds;

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Current Challenges in Stability Issues for Numerical Differential Equations: Cetraro, Italy 2011, Editors

This volume addresses some of the research areas in the general field of stability studies for differential equations, with emphasis on;

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Oscillation, Nonoscillation, Stability and Asymptotic Properties for Second and Higher Order Functional Differential Equations

in applications is one of the main reasons for the developments in this field. The control in the mechanical processes leads to mathematical models with;

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Exact Solutions and Invariant Subspaces of Nonlinear Partial Differential Equations in Mechanics and Physics

for nonlinear operators and their crucial new properties. This practical reference deals with various partial differential equations (PDEs;

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Recent Advances in Delay Differential and Difference Equations

Delay differential and difference equations serve as models for a range of processes in biology, physics, engineering and control theory;

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Handbook of Geometric Analysis, No. 1

Geometric Analysis combines differential equations with differential geometry. An important aspect of geometric analysis is to approach;

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Soliton Equations and Their Algebro-Geometric Solutions

The focus of this book is on algebro-geometric solutions of completely integrable nonlinear partial differential equations in (1+1;

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Nonoscillation and Oscillation Theory for Functional Differential Equations

This book summarizes the qualitative theory of differential equations with or without delays, collecting recent oscillation studies;

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Simulating Hamiltonian Dynamics

properties of a system of differential equations. In this book the authors outline the principles of geometric integration and demonstrate how they;

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Partial Differential Equations: Vol. 1 Foundations and Integral Representations

equations; Weak solutions of differential equations; Nonlinear partial differential equations and characteristics; Nonlinear elliptic systems with;

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Computer Physics

numerical solution of non-linear partial differential equations using symplectic geometric integrators and grid computing multiple shooting;

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Waves and Boundary Problems

approximate solutions serve as a foolproof basis for testing numerical algorithms. The second volume will be related to partial differential equations.;

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Soliton Equations And Their Algebro-Geometric Solutions: Vol

appendices. Detailed notes for each chapter, together with an exhaustive bibliography, enhance understanding of the main results.;

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Differential Equations

automorphic solutions for some non-linear differential equations; positive solutions for p-laplacian dynamic delay differential equations on time;

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Hyperbolic Partial Differential Equations and Geometric Optics

differential equations: nonlinear microlocal analysis, the control of waves, and nonlinear geometric optics.;

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Geometric Partial Differential Equations And Image Analysis

This book provides an introduction to the use of geometric partial differential equations in image processing and computer vision. This;

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