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Classical and computational solid mechanics / Y.C. Fung, Pin Tong

By: Contributor(s): Material type: TextTextLanguage: English Series: Advanced series in engineering science ; v. 1Publication details: Singapore ; River Edge, NJ : World Scientific, c2001.Description: xx, 930 p. : ill. ; 23 cmISBN:
  • 9810239122
Other title:
  • Solid mechanics
Subject(s): DDC classification:
  • 620.1 FUN 2001 21
Contents:
1. Introduction -- 2. Tensor analysis -- 3. Stress tensor -- 4. Analysis of strain -- 5. Conservation laws -- 6. Elastic and plastic behavior of materials -- 7. Linearized theory of elasticity -- 8. Solutions of problems in linearized theory of elasticity by potentials -- 9. Two-dimensional problems in linearized theory of elasticity -- 10. Variational calculus, energy theorems, Saint-Venant's principle -- 11. Hamilton's principle, wave propagation, applications of generalized coordinates -- 12. Elasticity and thermodynamics -- 13. Irreversible thermodynamics and viscoelasticity -- 14. Thermoelasticity -- 15. Viscoelasticity -- 16. Large deformation -- 17. Incremental approach to solving some nonlinear problems -- 18. Finite element methods -- 19. Mixed and hybrid formulations -- 20. Finite element methods for plates and shells -- 21. Finite element modeling of nonlinear elasticity, viscoelasticity, plasticity, viscoplasticity and creep -- Bibliography -- Author index -- Subject index.
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Holdings
Item type Current library Call number Copy number Status Date due Barcode
Sách, chuyên khảo, tuyển tập Phòng DVTT Tổng hợp Kho tham khảo 620.1 FUN 2001 (Browse shelf(Opens below)) 1 Available A-D0/05409

Includes bibliographical references (p. 873-908) and index.

1. Introduction -- 2. Tensor analysis -- 3. Stress tensor -- 4. Analysis of strain -- 5. Conservation laws -- 6. Elastic and plastic behavior of materials -- 7. Linearized theory of elasticity -- 8. Solutions of problems in linearized theory of elasticity by potentials -- 9. Two-dimensional problems in linearized theory of elasticity -- 10. Variational calculus, energy theorems, Saint-Venant's principle -- 11. Hamilton's principle, wave propagation, applications of generalized coordinates -- 12. Elasticity and thermodynamics -- 13. Irreversible thermodynamics and viscoelasticity -- 14. Thermoelasticity -- 15. Viscoelasticity -- 16. Large deformation -- 17. Incremental approach to solving some nonlinear problems -- 18. Finite element methods -- 19. Mixed and hybrid formulations -- 20. Finite element methods for plates and shells -- 21. Finite element modeling of nonlinear elasticity, viscoelasticity, plasticity, viscoplasticity and creep -- Bibliography -- Author index -- Subject index.

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