Description

Because of developments in powerful computer technology, computational techniques, advances in a wide spectrum of diverse technologies, and other advances coupled with cross disciplinary pursuits between technology and its greatly significant applied implications in human body processes, the field of biomechanics is evolving as a broadly significant area. The four volumes of Biomechanical Systems, Techniques, and Applications explore the many areas of significant advances, including dynamics of musculo-skeletal systems; mechanics of hard and soft tissues, muscles, bone remodeling, hard and soft tissue interfaces, blood flow, air flow, flow-prosthesis interfaces, and impact; cardiovascular and respiratory biomechanics; and dynamics of many machine interactions.

Biomechanical Systems: Techniques and Applications, Volume I: Computer Techniques and Computational Methods in Biomechanics

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£475.00

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Hardback by Cornelius T. Leondes

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Because of developments in powerful computer technology, computational techniques, advances in a wide spectrum of diverse technologies, and other advances... Read more

    Publisher: Taylor & Francis Inc
    Publication Date: 26/12/2000
    ISBN13: 9780849390463, 978-0849390463
    ISBN10: 084939046X

    Number of Pages: 216

    Non Fiction , Technology, Engineering & Agriculture , Education

    Description

    Because of developments in powerful computer technology, computational techniques, advances in a wide spectrum of diverse technologies, and other advances coupled with cross disciplinary pursuits between technology and its greatly significant applied implications in human body processes, the field of biomechanics is evolving as a broadly significant area. The four volumes of Biomechanical Systems, Techniques, and Applications explore the many areas of significant advances, including dynamics of musculo-skeletal systems; mechanics of hard and soft tissues, muscles, bone remodeling, hard and soft tissue interfaces, blood flow, air flow, flow-prosthesis interfaces, and impact; cardiovascular and respiratory biomechanics; and dynamics of many machine interactions.

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