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Fundamentals of Biomechanics: Equilibrium, Motion, and Deformation

Autor Nihat Özkaya, Dawn Leger, David Goldsheyder, Margareta Nordin
en Limba Engleză Hardback – 27 dec 2016
This textbook integrates the classic fields of mechanics—statics, dynamics, and strength of materials—using examples from biology and medicine. The book is excellent for teaching either undergraduates in biomedical engineering programs or health care professionals studying biomechanics at the graduate level. Extensively revised from a successful third edition, Fundamentals of Biomechanics features a wealth of clear illustrations, numerous worked examples, and many problem sets. The book provides the quantitative perspective missing from more descriptive texts, without requiring an advanced background in mathematics. It will be welcomed for use in courses such as biomechanics and orthopedics, rehabilitation and industrial engineering, and occupational or sports medicine.
This book:

  • Introduces the fundamental concepts, principles, and methods that must be understood to begin the study of biomechanics
  • Reinforces basic principles of biomechanics with repetitive exercises in class and homework assignments given throughout the textbook
  • Includes over 100 new problem sets with solutions and illustrations

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Specificații

ISBN-13: 9783319447377
ISBN-10: 3319447378
Pagini: 240
Ilustrații: XV, 454 p.
Dimensiuni: 210 x 279 x 30 mm
Greutate: 1.32 kg
Ediția:4th ed. 2017
Editura: Springer International Publishing
Colecția Springer
Locul publicării:Cham, Switzerland

Cuprins

Preface.- 1. Introduction.- 2. Force Vector.- 3. Moment And Torque Vectors.- 4. Statics: Systems in Equilibrium.- 5. Applications of Statics to Biomechanics.- 6. Introduction to Dynamics.- 7. Linear Kinematics.- 8. Linear Kinetics.- 9. Angular Kinematics.- 10. Angular Kinetics.- 11. Impulse and Momentum.- 12. Introduction to Deformable Body Mechanics.- 13. Stress & Strain.- 14. Multiaxial Deformations & Stress Analyses.- 15. Mechanical Properties of Biological Tissues.- Appendix A. Plane Geometry.- Appendix B. Vector Algebra.- Appendix C. Calculus.- Index.

Notă biografică

Dawn Leger, Ph.D. Margareta Nordin, Dr.Sci. David Goldsheyder, M.S., M.A. CPE.

Textul de pe ultima copertă

This textbook integrates the classic fields of mechanics—statics, dynamics, and strength of materials—using examples from biology and medicine. The book is excellent for teaching either undergraduates in biomedical engineering programs or health care professionals studying biomechanics at the graduate level. Extensively revised from a successful third edition, Fundamentals of Biomechanics features a wealth of clear illustrations, numerous worked examples, and many problem sets. The book provides the quantitative perspective missing from more descriptive texts, without requiring an advanced background in mathematics. It will be welcomed for use in courses such as biomechanics and orthopedics, rehabilitation and industrial engineering, and occupational or sports medicine.

This book:
  •          Introduces the fundamental concepts, principles, and methods that must be understood to begin the study of biomechanics
  •          Reinforces basic principles of biomechanics with repetitive exercises in class and homework assignments given throughout the textbook
  •          Includes over 100 new problem sets with solutions and illustrations

Caracteristici

Introduces the fundamental concepts, principles, and methods that must be understood to begin the study of biomechanics Reinforces basic principles of biomechanics with repetitive exercises in class and homework assignments given throughout the textbook Includes over 100 new problem sets with solutions and illustrations Includes supplementary material: sn.pub/extras

Recenzii

From the reviews of the third edition:
“This is the third edition of book on the basic mechanics related to body joints and muscle functions. … The audience includes orthopedic surgery residents and bioengineering students. … This is a well-written publication with very good illustrations. It is a good reference on biomechanics and would be of benefit to orthopedics residents and others involved in related research.” (Riad Barmada, Doody’s Review Service, October, 2012)