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Introduction to Finite Element Analysis for Engineers

Introduction to Finite Element Analysis for Engineersaf Saad A Ragab
Bag om Introduction to Finite Element Analysis for Engineers

Now in its second edition, Introduction to Finite Element Analysis for Engineers is an essential introduction to FEA as a method to solve differential equations. With many practical examplesfocusing on both solid mechanics and fluid mechanics, it includes problems for both applications. Using a structure of classes of differential equations, the book also includes MATLAB(R) codes and aims to build a comprehensive understanding of FEA and its applications in modern engineering. New chapters include topics such as a system of partial differential equations in two or more independent variables, while chapter ten presents the finite element method for a nonlinear Mindlin-Reissner plate. The book demonstrates the power and versatility of FEA as a toolwith a large number of examples of practical engineering problems. These problems range from those which can be solved without a computer, to those requiring MATLAB(R) or Python. With applications in civil, mechanical, aerospace and biomedical engineering, the textbook is ideal for senior and first-year graduate students and also aligns with mathematics courses.

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  • Sprog:
  • Engelsk
  • ISBN:
  • 9781032346298
  • Indbinding:
  • Hardback
  • Udgivet:
  • 23. August 2024
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Beskrivelse af Introduction to Finite Element Analysis for Engineers

Now in its second edition, Introduction to Finite Element Analysis for Engineers is an essential introduction to FEA as a method to solve differential equations. With many practical examplesfocusing on both solid mechanics and fluid mechanics, it includes problems for both applications.
Using a structure of classes of differential equations, the book also includes MATLAB(R) codes and aims to build a comprehensive understanding of FEA and its applications in modern engineering. New chapters include topics such as a system of partial differential equations in two or more independent variables, while chapter ten presents the finite element method for a nonlinear Mindlin-Reissner plate. The book demonstrates the power and versatility of FEA as a toolwith a large number of examples of practical engineering problems. These problems range from those which can be solved without a computer, to those requiring MATLAB(R) or Python.
With applications in civil, mechanical, aerospace and biomedical engineering, the textbook is ideal for senior and first-year graduate students and also aligns with mathematics courses.

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