Introduction to Finite and Spectral Element Methods Using MATLAB

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A01=Constantine Pozrikidis
advanced finite element MATLAB applications
And Structural Mechanics
Appell Polynomials
applied physics modeling
Author_Constantine Pozrikidis
Barycentric Coordinates
boundary value problems
Category=PBKS
Category=UFM
computational mechanics
Connectivity Matrix
D? D?
Development Of Algorithms
Diffusion Matrix
Dirichlet Boundary Condition
Domain Discretization Modules In Three Dimensions
Dx Dy
Dξ Dη
Element Interpolation Functions
Element Mass Matrix
Element Nodes
engineering mathematics
eq_bestseller
eq_computing
eq_isMigrated=1
eq_isMigrated=2
eq_nobargain
eq_non-fiction
Finite Element Matlab Codes
Fluid Mechanics
Fselib Library
Galerkin Finite Element Method
Galerkin Projection
Global Node
High-Order And Spectral Elements In One Dimension
Interior Nodes
Interpolated Polynomial
Interpolation Functions
Interpolation Nodes
Methods For Ordinary And Partial Differential Equations
Mid-side Nodes
Midside Nodes
Neumann Boundary Condition
numerical simulation
Ordinary Differential Equations
Problems In Solid Mechanics
scientific computing
Spectral Element Method
Spectral Element Methods
Uniform Node Distribution
Unsteady Heat Conduction Equation
Vertex Nodes

Product details

  • ISBN 9781482209150
  • Weight: 1400g
  • Dimensions: 156 x 234mm
  • Publication Date: 20 Jun 2014
  • Publisher: Taylor & Francis Inc
  • Publication City/Country: US
  • Product Form: Hardback
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Incorporating new topics and original material, Introduction to Finite and Spectral Element Methods Using MATLAB®, Second Edition enables readers to quickly understand the theoretical foundation and practical implementation of the finite element method and its companion spectral element method. Readers gain hands-on computational experience by using the free online FSELIB library of MATLAB® functions and codes. With the book as a user guide, readers can immediately run the codes and graphically display solutions to a variety of elementary and advanced problems.

New to the Second Edition

  • Two new chapters with updated material
  • Updated detailed proofs and original derivations
  • New schematic illustrations and graphs
  • Additional solved problems
  • Updated MATLAB software, including improved and new computer functions as well as complete finite element codes incorporating domain discretization modules in three dimensions

Suitable for self-study or as a textbook in various science and engineering courses, this self-contained book introduces the fundamentals on a need-to-know basis and emphasizes the development of algorithms and the computer implementation of essential procedures. The text first explains basic concepts and develops the algorithms before addressing problems in solid mechanics, fluid mechanics, and structural mechanics.

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