Ideal for students taking biomechanics courses, this fully updated second edition integrates basic and advanced concepts of mechanics with numerical methods and biomedical applications. It includes a brand new introduction to vector and tensor calculus, dozens of new examples, exercises and solutions, and online MATLAB-based FEM code.
Ideal for students taking biomechanics courses, this fully updated second edition integrates basic and advanced concepts of mechanics with numerical methods and biomedical applications. It includes a brand new introduction to vector and tensor calculus, dozens of new examples, exercises and solutions, and online MATLAB-based FEM code.Hinweis: Dieser Artikel kann nur an eine deutsche Lieferadresse ausgeliefert werden.
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Autorenporträt
Cees Oomens is Full Professor in Biomechanics of Soft Tissues at the Technische Universiteit Eindhoven, The Netherlands.
Inhaltsangabe
1. Vector and tensor calculus 2. The concepts of force and moment 3. Static equilibrium 4. The mechanical behaviour of fibres 5. Fibres: time-dependent behaviour 6. Analysis of a one-dimensional continuous elastic medium 7. Biological materials and continuum mechanics 8. Stress in three-dimensional continuous media 9. Motion: the time as an extra dimension 10. Deformation and rotation, deformation rate and spin 11. Local balance of mass, momentum and energy 12. Constitutive modelling of solids and fluids 13. Solution strategies for solid and fluid mechanics problems 14. Numerical solution of one-dimensional diffusion equation 15. The one-dimensional convection-diffusion equation 16. The three-dimensional convection-diffusion equation 17. Shape functions and numerical integration 18. Infinitesimal strain elasticity problems.
1. Vector and tensor calculus 2. The concepts of force and moment 3. Static equilibrium 4. The mechanical behaviour of fibres 5. Fibres: time-dependent behaviour 6. Analysis of a one-dimensional continuous elastic medium 7. Biological materials and continuum mechanics 8. Stress in three-dimensional continuous media 9. Motion: the time as an extra dimension 10. Deformation and rotation, deformation rate and spin 11. Local balance of mass, momentum and energy 12. Constitutive modelling of solids and fluids 13. Solution strategies for solid and fluid mechanics problems 14. Numerical solution of one-dimensional diffusion equation 15. The one-dimensional convection-diffusion equation 16. The three-dimensional convection-diffusion equation 17. Shape functions and numerical integration 18. Infinitesimal strain elasticity problems.
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