An Introduction to the Finite Element Method

Author:   J Reddy
Publisher:   McGraw-Hill Education - Europe
Edition:   3rd edition
ISBN:  

9780072466850


Pages:   784
Publication Date:   16 January 2005
Replaced By:   9781259861901
Format:   Hardback
Availability:   In Print   Availability explained
Limited stock is available. It will be ordered for you and shipped pending supplier's limited stock.

Our Price $613.93 Quantity:  
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An Introduction to the Finite Element Method


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Overview

J.N. Reddy's, An Introduction to the Finite Element Method, third edition is an update of one of the most popular FEM textbooks available. The book retains its strong conceptual approach, clearly examining the mathematical underpinnings of FEM, and providing a general approach of engineering application areas. Known for its detailed, carefully selected example problems and extensive selection of homework problems, the author has comprehensively covered a wide range of engineering areas making the book approriate for all engineering majors, and underscores the wide range of use FEM has in the professional world. A supplementary text Web site located at http://www.mhhe.com/reddy3e contains password-protected solutions to end-of-chapter problems, general textbook information, supplementary chapters on the FEM1D and FEM2D computer programs, and more!

Full Product Details

Author:   J Reddy
Publisher:   McGraw-Hill Education - Europe
Imprint:   McGraw-Hill Professional
Edition:   3rd edition
Dimensions:   Width: 18.50cm , Height: 3.30cm , Length: 23.40cm
Weight:   1.293kg
ISBN:  

9780072466850


ISBN 10:   0072466855
Pages:   784
Publication Date:   16 January 2005
Audience:   Professional and scholarly ,  College/higher education ,  Professional & Vocational ,  Tertiary & Higher Education
Replaced By:   9781259861901
Format:   Hardback
Publisher's Status:   Out of Print
Availability:   In Print   Availability explained
Limited stock is available. It will be ordered for you and shipped pending supplier's limited stock.

Table of Contents

1 Introduction 2 Mathematical Preliminaries, Integral Formulations, and Variational Methods 3 Second-order Differential Equations in One Dimension: Finite Element Models 4 Second-order Differential Equations in One Dimension: Applications 5 Beams and Frames 6 Eigenvalue and Time-Dependent Problems 7 Computer Implementation 8 Single-Variable Problems in Two Dimensions 9 Interpolation Functions, Numerical Integration, and Modeling Considerations 10 Flows of Viscous Incompressible Fluids 11 Plane Elasticity 12 Bending of Elastic Plates 13 Computer Implementation of Two-Dimensional Problems 14 Prelude to Advanced Topics

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