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Fundamentals of Computational Fluid Dynamics

The chosen semi-discrete approach of a reduction procedure of partial differential equations to ordinary differential equations and finally;

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Fundamentals of Computational Fluid Dynamics

The chosen semi-discrete approach of a reduction procedure of partial differential equations to ordinary differential equations and finally;

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Computational Differential Equations

This is a two volume introduction to the computational solution of differential equations using a unified approach organized around the;

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Continuum Mechanics, Applied Mathematics and Scientific Computing: Godunov's Legacy

differential equations, equations of mathematical physics, mathematical modeling, difference schemes, advanced computational methods for hyperbolic;

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Continuum Mechanics, Applied Mathematics and Scientific Computing: Godunov's Legacy

differential equations, equations of mathematical physics, mathematical modeling, difference schemes, advanced computational methods for hyperbolic;

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Elementary Differential Equations with Boundary Value Problems

computational aspects of differential equations in a seamless way. For example, whenever a new type of problem is introduced (such as first-order;

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Numerical Methods for Differential Equations

With emphasis on modern techniques, Numerical Methods for Differential Equations: A Computational Approach covers the development and;

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CRC Handbook of Lie Group Analysis of Differential Equations, Volume III

Today Lie group theoretical approach to differential equations has been extended to new situations and has become applicable to the;

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CRC Handbook of Lie Group Analysis of Differential Equations, Volume I

Today Lie group theoretical approach to differential equations has been extended to new situations and has become applicable to the;

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CRC Handbook of Lie Group Analysis of Differential Equations, Volume I

Today Lie group theoretical approach to differential equations has been extended to new situations and has become applicable to the;

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Computational Mathematics in Engineering and Applied Science

Computational Mathematics in Engineering and Applied Science provides numerical algorithms and associated software for solving a spectrum;

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Computational Physics

dynamical systems, as well as effects in field theories and macroscopic pattern formation described by (nonlinear) partial differential equations. A;

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General Linear Methods for Ordinary Differential Equations

Learn to develop numerical methods for ordinary differential equations General Linear Methods for Ordinary Differential Equations fills a;

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Fuzzy Arbitrary Order System Fuzzy Fract

Presents a systematic treatment of fuzzy fractional differential equations as well as newly developed computational methods to model;

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Applied Stochastic Differential Equations

Stochastic differential equations are differential equations whose solutions are stochastic processes. They exhibit appealing mathematical;

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Multiscale Wavelet Methods for Partial Differential Equations

developments in the field of wavelet constructions in connection with partial differential equations. Specialists in numerical applications and;

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Differential and Integral Equations

in physics, computational mathematics, economics, etc. Differential and integral equations are closely related to each other and each can be;

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Fractional Differential Equations

This graduate textbook provides a self-contained introduction to modern mathematical theory on fractional differential equations. It;

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Delay Differential Equations

Delay Differential Equations: Recent Advances and New Directions cohesively presents contributions from leading experts on the theory and;

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Differential Equations and Linear Algebra

For courses in Differential Equations and Linear Algebra. Acclaimed authors Edwards and Penney combine core topics in elementary;

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Separation of Variables for Partial Differential Equations

Separation of Variables for Partial Differential Equations: An Eigenfunction Approach includes many realistic applications beyond the usual;

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Separation of Variables for Partial Differential Equations

Separation of Variables for Partial Differential Equations: An Eigenfunction Approach includes many realistic applications beyond the usual;

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Iterative Splitting Methods for Differential Equations

Iterative Splitting Methods for Differential Equations explains how to solve evolution equations via novel iterative-based splitting;

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Iterative Splitting Methods for Differential Equations

Iterative Splitting Methods for Differential Equations explains how to solve evolution equations via novel iterative-based splitting;

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Computational Partial Differential Equations

This text teaches finite element methods and basic finite difference methods from a computational point of view. It emphasizes developing;

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An Introduction to Differential Equations Using MATLAB

An Introduction to Differential Equations using MATLAB exploits the symbolic, numerical, and graphical capabilitiesof MATLAB to develop a;

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Numerical Analysis and Its Applications

Computational Geometry; Numerical Linear Algebra and Numer-ical Solution of Transcendental Equations; Numerical Methods for Differential Equations; High;

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