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Interval finite element method with MATLAB /

Interval Finite Element Method with MATLAB provides a thorough introduction to an effective way of investigating problems involving uncertainty using computational modeling. The well-known and versatile Finite Element Method (FEM) is combined with the concept of interval uncertainties to develop the...

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Detalles Bibliográficos
Clasificación:Libro Electrónico
Autor principal: Nayak, Sukanta
Otros Autores: Chakraverty, Snehashish
Formato: Electrónico eBook
Idioma:Inglés
Publicado: San Diego : Elsevier Science, 2018.
Temas:
Acceso en línea:Texto completo

MARC

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245 1 0 |a Interval finite element method with MATLAB /  |c Sukanta Nayak, Snehashish Chakraverty. 
264 1 |a San Diego :  |b Elsevier Science,  |c 2018. 
300 |a 1 online resource (170 pages) 
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505 0 |a Front Cover; Interval Finite Element Method With MATLAB�A�; Copyright; Contents; Author Biographies; Preface; Acknowledgments; Chapter 1: Interval Arithematic; 1.1. Truncation Error; 1.2. Round-Off Error; 1.3. Degenerate Intervals; 1.4. Intersection, Union, and Interval Hull; 1.5. Width, Absolute Value, Midpoint; 1.6. Interval Arithmetic; References; Chapter 2: Interval Finite Element Method; 2.1. A Brief Overview; 2.2. Finite Element Method (FEM); 2.3. Hybridization of Interval and Finite Element Method; References; Chapter 3: Preliminaries of MATLAB�A�; 3.1. Beginning With MATLAB�A� 
505 8 |a 3.2. Matrices, Operations, and Basic MATLAB�A� Functions3.3. M-Files, Logical-Relational Operators, and IF Statements; 3.4. Functions in MATLAB�A�; 3.5. FOR and WHILE Loops in MATLAB�A�; 3.5.1. FOR Loops; 3.5.2. WHILE Loops; 3.6. Graphics in MATLAB�A�; 3.7. Efficiency of Algorithms in MATLAB�A�; 3.8. Useful Functions and Commands in MATLAB�A�; References; Chapter 4: One-Dimensional Interval Finite Element; 4.1. Spring Element; 4.2. Linear Bar Element; 4.3. Quadratic Bar Element; References; Chapter 5: MATLAB�A� Code for One-Dimensional Interval Finite Element; 5.1. MATLAB�A� Code for Spring Element 
505 8 |a 5.1.1. MATLAB�A� Functions for Spring Element5.2. MATLAB�A� Code for Linear Bar Element; 5.2.1. MATLAB�A� Functions for Linear Bar Element; 5.3. MATLAB�A� Code for Quadratic Bar Element; 5.3.1. MATLAB�A� Functions for Quadratic Bar Element; References; Chapter 6: Two-Dimensional Interval Finite Element; 6.1. Plane Truss Element; 6.2. Beam Element; 6.3. Plane Frame Element; 6.4. Linear Triangular Element; References; Chapter 7: MATLAB�A� Code for Two-Dimensional Interval Finite Element; 7.1. MATLAB�A� Code for Plane Truss Element; 7.1.1. MATLAB�A� Functions for Plane Truss Element 
505 8 |a 7.2. MATLAB�A� Code for Beam Element7.2.1. MATLAB�A� Functions for Beam Element; 7.3. MATLAB�A� Code for Plane Frame Element; 7.3.1. MATLAB�A� Functions for Plane Frame Element; 7.4. MATLAB�A� Code for Linear Triangular Element; 7.4.1. MATLAB�A� Functions for Linear Triangular Element; References; Chapter 8: Three-Dimensional Interval Finite Element; 8.1. Space Truss Element; 8.2. Space Frame Element; 8.3. Linear Tetrahedral Element; References; Chapter 9: MATLAB�A� Code for Three-Dimensional Interval Finite Element; 9.1. MATLAB�A� Code for Space Truss Element 
505 8 |a 9.1.1. MATLAB�A� Functions for Space Truss Element9.2. MATLAB�A� Code for Space Frame Element; 9.2.1. MATLAB�A� Functions for Space Frame Element; 9.3. MATLAB�A� Code for Linear Tetrahedral Element; 9.3.1. MATLAB�A� Functions for Linear Tetrahedral Element; References; Index; Back Cover 
520 |a Interval Finite Element Method with MATLAB provides a thorough introduction to an effective way of investigating problems involving uncertainty using computational modeling. The well-known and versatile Finite Element Method (FEM) is combined with the concept of interval uncertainties to develop the Interval Finite Element Method (IFEM). An interval or stochastic environment in parameters and variables is used in place of crisp ones to make the governing equations interval, thereby allowing modeling of the problem. The concept of interval uncertainties is systematically explained. Several examples are explored with IFEM using MATLAB on topics like spring mass, bar, truss and frame. 
504 |a Includes bibliographical references and index. 
630 0 0 |a MATLAB. 
650 0 |a Finite element method. 
650 6 |a M�ethode des �el�ements finis.  |0 (CaQQLa)201-0021899 
650 7 |a MATHEMATICS  |x Numerical Analysis.  |2 bisacsh 
630 0 7 |a MATLAB  |2 fast  |0 (OCoLC)fst01365096 
650 7 |a Finite element method  |2 fast  |0 (OCoLC)fst00924897 
700 1 |a Chakraverty, Snehashish. 
776 0 8 |i Print version:  |a Nayak, Sukanta.  |t Interval Finite Element Method with MATLAB.  |d San Diego : Elsevier Science, �2018  |z 9780128129739 
856 4 0 |u https://sciencedirect.uam.elogim.com/science/book/9780128129739  |z Texto completo