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Finite Element Method: Introduction, Concepts & Fundamentals

De (autor): Mirza Murtaza

Finite Element Method: Introduction, Concepts & Fundamentals - Mirza Murtaza

Finite Element Method: Introduction, Concepts & Fundamentals

De (autor): Mirza Murtaza

Finite Element Method: Introduction, Concepts & Fundamentals:
A comprehensive guide to the foundations of FEM, numerical methods, and computer-aided engineering.

This book offers an in-depth exploration of the Finite Element Method (FEM), integrating concepts from computer-aided engineering (CAE) and numerical methods. Beginning with the historical development of FEM, it guides readers through its theoretical foundations, procedural steps, and classifications of finite elements.
Special attention is given to the theory of elasticity, strain-displacement and stress-strain relationships, as well as core techniques such as the Potential Energy Method, Rayleigh-Ritz Method, and Galerkin's Method.
Aligned with Module I of the FEM syllabus for undergraduate (BE/BS) students in Mechanical, Aerospace, and Civil Engineering, and postgraduate (ME/MS) students in Mechanical and Structural Engineering, this book is ideal for academic study and exam preparation.
To support effective learning, the book includes:

  • Solved examples to illustrate key concepts
  • Objective-type questions and multiple-choice quizzes in the 'Test Your Knowledge' sections
  • Step-by-step explanations of FEM formulation and application
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85.17 Lei

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Finite Element Method: Introduction, Concepts & Fundamentals:
A comprehensive guide to the foundations of FEM, numerical methods, and computer-aided engineering.

This book offers an in-depth exploration of the Finite Element Method (FEM), integrating concepts from computer-aided engineering (CAE) and numerical methods. Beginning with the historical development of FEM, it guides readers through its theoretical foundations, procedural steps, and classifications of finite elements.
Special attention is given to the theory of elasticity, strain-displacement and stress-strain relationships, as well as core techniques such as the Potential Energy Method, Rayleigh-Ritz Method, and Galerkin's Method.
Aligned with Module I of the FEM syllabus for undergraduate (BE/BS) students in Mechanical, Aerospace, and Civil Engineering, and postgraduate (ME/MS) students in Mechanical and Structural Engineering, this book is ideal for academic study and exam preparation.
To support effective learning, the book includes:

  • Solved examples to illustrate key concepts
  • Objective-type questions and multiple-choice quizzes in the 'Test Your Knowledge' sections
  • Step-by-step explanations of FEM formulation and application
Citește mai mult

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