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Difference Methods for Singular Perturbation Problems

Difference Methods for Singular Perturbation Problems focuses on the development of robust difference schemes for wide classes of boundary;

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Differential Equations and Numerical Analysis

This book offers an ideal introduction to singular perturbation problems, and a valuable guide for researchers in the field of differential;

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Singular Perturbation Theory

This book is a rigorous presentation of the method of matched asymptotic expansions, the primary tool for attacking singular perturbation;

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Singular-Perturbation Theory

This book presents an introduction to singular-perturbation problems, problems which depend on a parameter in such a way that solutions;

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Singular-Perturbation Theory

This book presents an introduction to singular-perturbation problems, problems which depend on a parameter in such a way that solutions;

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Advanced Mathematical Methods for Scientists and Engineers I

A clear, practical and self-contained presentation of the methods of asymptotics and perturbation theory for obtaining approximate;

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Numerical Methods and their Applications to Linear Algebra

methods. It includes new iterative methods for generalized singular-value problems and perturbation analysis of the stochastic algebraic Riccati;

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Geometric Singular Perturbation Theory Beyond the Standard Form

considered singular perturbation problems, and this volume focuses on the geometric approach known as Geometric Singular Perturbation Theory (GSPT;

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Asymptotic Methods for the Fokker-Planck Equation and the Exit Problem in Applications

determined with singular perturbation methods for the corresponding Fokker-Planck equation. The authors indicate how their techniques relate to the;

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Lecture Notes On Mathematical Theory Of The Boltzmann Equation

dealt with: derivation of kinetic equations, qualitative analysis of the initial value problem, singular perturbation analysis towards the;

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Numerical Methods For Elliptic Problems With Singularities

This book presents two kinds of numerical methods for solving elliptic boundary value problems with singularities. Part I gives the;

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Introduction to Asymptotic Methods

, Introduction to Asymptotic Methods reviews the most important methods of singular perturbations within the scope of application of differential;

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Perturbation Methods

In this book the author presents the theory and techniques underlying perturbation methods in a manner that will make the book widely;

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Nonlinear & Complex Systems

perturbation methods, singular perturbation problem, homotopy perturbation method, variational method, and successive complementary expansion method (a;

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Dynamics of Statistical Experiments

methods for the operator and martingale characterization of Markov processes, including singular perturbation methods. Furthermore, they justify;

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Singular Perturbation Methods in Control

continues to be essential in many ways. It lays down the foundation of singular perturbation theory for linear and nonlinear systems, it presents;

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Perturbation Methods in Science and Engineering

Perturbation Methods in Science and Engineering provides the fundamental and advanced topics in perturbation methods in science and;

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Approximate Analytical Methods for Solving Ordinary Differential Equations

Approximate Analytical Methods for Solving Ordinary Differential Equations (ODEs) is the first book to present all of the available;

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Approximate Analytical Methods for Solving Ordinary Differential Equations

Approximate Analytical Methods for Solving Ordinary Differential Equations (ODEs) is the first book to present all of the available;

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Singular Perturbations in Hysteresis

Brings together many important recent developments in the analysis of singular perturbation and hysteresis phenomena in an accessible and;

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A First Look at Perturbation Theory

differential equations, the authors explain many techniques for handling perturbations that reorder the equations or involve an unbounded independent;

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Introduction to Perturbation Theory in Quantum Mechanics

Perturbation theory is a powerful tool for solving a wide variety of problems in applied mathematics, a tool particularly useful in quantum;

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Introduction to Perturbation Theory in Quantum Mechanics

Perturbation theory is a powerful tool for solving a wide variety of problems in applied mathematics, a tool particularly useful in quantum;

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Applied Mathematics And Modeling For Chemical Engineers

This Second Edition of the go-to reference combines the classical analysis and modern applications of applied mathematics for chemical;

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Nonlinear Wave Equations

of solutions, and for the study of perturbation methods.;

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Advanced Electromagnetic Computation

methods based on perturbation techniques and three dimensional finite element examples from radiation scattering are included.;

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Advanced Electromagnetic Computation

methods based on perturbation techniques and three dimensional finite element examples from radiation scattering are included.;

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