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Finite Difference Computing with PDEs

This book is open access under a CC BY 4.0 license. This easy-to-read book introduces the basic;...

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Recent Advances in Scientific Computing and Applications

-optics, biofilms, finance, magnetohydrodynamics flow, electromagnetic waves, the fluid-structure interaction problem, and stochastic PDEs;

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Computational Partial Differential Equations Using MATLAB®

finite difference, finite element, meshless method, and finite volume method), provides the MATLAB source code for most popular PDEs with;

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Exact Finite-Difference Schemes

transport problems. After this, applications are discussed, such as the discretisation of ODEs and PDEs and numerical methods for stochastic;

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Numerical Analysis of Partial Differential Equations Using Maple and MATLAB

This book provides an elementary yet comprehensive introduction to the numerical solution of partial differential equations (PDEs). Used to;

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Introduction To Computation & Modeling F

methods for parabolic, elliptic, and hyperbolic PDEs; mathematical modeling with differential equations; numerical solutions; and finite;

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Introduction to Scientific Computing

This book presents the basic scientific computing methods for the solution of partial differential equations (PDEs) as they occur;

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Numerical Methods in Computational Finance

parabolic PDEs. It encapsulates all the background information to construct stable and accurate finite difference schemes. Part D Advanced;

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Numerical Methods for Partial Differential Equations

methods for solving partial differential equations (PDEs), namely finite difference and finite volume methods. The solution of PDEs can be very;

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First Course In Partial Differential Equations, A

. First-order and some common nonlinear PDEs arising in the physical and life sciences, with their solutions, are also covered.This textbook;

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Spectral Methods Using Multivariate Polynomials On The Unit Ball

of PDEs, along with anyone interested in applying this method to a particular physical problem One of the few texts to address this area;

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Proper Orthogonal Decomposition Methods for Partial Differential Equations

computational process. Introduces the foundations of finite-differences, finite-elements and finite-volume-elements. Models of time-dependent PDEs are;

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Partial Differential Equations and the Finite Element Method

of partial differential equations (PDEs) and finite element methods (FEM). Both nodal and hierachic concepts of the FEM are examined. Reflecting the;

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Finite Difference Methods,Theory and Applications

. These papers together with 12 invited papers cover topics such as finite difference and combined finite difference methods as well as finite;

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Applications of Lie Groups to Difference Equations

of invariant meshes is presented. In particular, and with numerous applications in numerics for continuous media, that most evolution PDEs need to be;

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Applications of Lie Groups to Difference Equations

of examples of invariant meshes is presented. In particular, and with numerous applications in numerics for continuous media, that most evolution PDEs;

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An Introduction to Domain Decomposition Methods

decomposition methods for partial differential equations (PDEs), focusing on parallel linear solvers. The authors present all popular algorithms, both;

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Finite Elements and Fast Iterative Solvers

The subject of this book is the efficient solution of partial differential equations (PDEs) that arise when modelling incompressible fluid;

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Finite Element Methods (Part 1)

This series of volumes will cover all the major aspects of Numerical Analysis, serving as the ba;...

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Introduction to Numerical Methods for Time Dependent Differential Equations

partial differential equations (PDEs). Beginning with ODEs and their approximations, the authors provide a crucial presentation of fundamental;

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Techniques of Scientific Computing (Part 2)

This series of volumes aims to cover the major aspects of Numerical Analysis, serving as the basic r;...

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Effective Condition Number for Numerical Partial Differential Equations

used as an estimation on stability for the numerical solutions of partial differential equations (PDEs) using algorithms, such as the;

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Numerical Control: Part a: Volume 23

Numerical Control: Part A, Volume 23 in the Handbook of Numerical Analysis series, highlights new advances in the field, with this new;

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Applied Mathematics And Modeling For Chemical Engineers

solution methods such as perturbation techniques and elementary numerical solutions. It also includes analytical methods to deal with important;

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Simplified FDM for Flow and Thermal Problems

. Because of its simplicity, anybody in the thermal field with some basic knowledge of programming can develop a program to solve any particular;

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The Finite Difference Time Domain Method for Electromagnetics

The Finite-Difference Time-domain (FDTD) method allows you to compute electromagnetic interaction for complex problem geometries with ease;

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