529,82 €
588,69 €
-10% with code: EXTRA
Energy Methods and Finite Element Techniques
Energy Methods and Finite Element Techniques
529,82
588,69 €
  • We will send in 10–14 business days.
Energy Methods and Finite Element Techniques: Stress and Vibration Applications provides readers with a complete understanding of the theory and practice of finite element analysis using energy methods to better understand, predict, and mitigate static stress and vibration in different structural and mechanical configurations. It presents readers with the underlying theory, techniques for implementation, and field-tested applications of these methods using linear ordinary differential equations…
  • Publisher:
  • ISBN-10: 0323886663
  • ISBN-13: 9780323886666
  • Format: 19.1 x 23.5 x 3 cm, softcover
  • Language: English
  • SAVE -10% with code: EXTRA

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Energy Methods and Finite Element Techniques: Stress and Vibration Applications provides readers with a complete understanding of the theory and practice of finite element analysis using energy methods to better understand, predict, and mitigate static stress and vibration in different structural and mechanical configurations. It presents readers with the underlying theory, techniques for implementation, and field-tested applications of these methods using linear ordinary differential equations. Statistical energy analysis and its various applications are covered, and applications discussed include plate problems, bars and beams, plane strain and stress, 3D elasticity problems, vibration problems, and more. Higher order plate and shell elements, steady state heat conduction, and shape function determinations and numerical integration are analyzed as well.

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  • Author: Muhsin Jweeg
  • Publisher:
  • ISBN-10: 0323886663
  • ISBN-13: 9780323886666
  • Format: 19.1 x 23.5 x 3 cm, softcover
  • Language: English English

Energy Methods and Finite Element Techniques: Stress and Vibration Applications provides readers with a complete understanding of the theory and practice of finite element analysis using energy methods to better understand, predict, and mitigate static stress and vibration in different structural and mechanical configurations. It presents readers with the underlying theory, techniques for implementation, and field-tested applications of these methods using linear ordinary differential equations. Statistical energy analysis and its various applications are covered, and applications discussed include plate problems, bars and beams, plane strain and stress, 3D elasticity problems, vibration problems, and more. Higher order plate and shell elements, steady state heat conduction, and shape function determinations and numerical integration are analyzed as well.

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