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Intermediate Solid Mechanics

Intermediate Solid Mechanics

c.£74.99

  • Publication planned for: January 2020
  • availability: Not yet published - available from January 2020
  • format: Hardback
  • isbn: 9781108499606

c.£ 74.99
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  • Based on class-tested material, this concise yet comprehensive treatment of the fundamentals of solid mechanics is ideal for those taking single-semester courses on the subject. It provides interdisciplinary coverage of the key topics, combining solid mechanics with structural design applications, mechanical behavior of materials, and the finite element method. Part I covers basic theory, including the analysis of stress and strain, Hooke's law, and the formulation of boundary-value problems in Cartesian and cylindrical coordinates. Part II covers applications, from solving boundary-value problems, to energy methods and failure criteria, two-dimensional plane stress and strain problems, antiplane shear, contact problems, and much more. With a wealth of solved examples, assigned exercises, and 130 homework problems, and a solutions manual available online, this is ideal for senior undergraduates studying solid mechanics, and graduates taking introductory courses in solid mechanics and theory of elasticity, across aerospace, civil and mechanical engineering, and materials science.

    • Covers both fundamental theory and applications
    • Concise yet comprehensive in its treatment
    • Includes numerous solved examples, assigned exercises, and homework problems, with a solutions manual available online
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    Product details

    • Publication planned for: January 2020
    • format: Hardback
    • isbn: 9781108499606
    • dimensions: 247 x 174 mm
    • availability: Not yet published - available from January 2020
  • Table of Contents

    Preface
    Part I. Fundamentals of Solid Mechanics:
    1. Analysis of stress
    2. Analysis of strain
    3. Stress-strain relations
    4. Boundary value problems of elasticity
    5. Boundary-value problems: cylindrical coordinates
    Part II. Applications:
    6. Two-dimensional problems of elasticity
    7. Two-dimensional problems in polar coordinates
    8. Antiplane shear
    9. Torsion of prismatic rods
    10. Bending of prismatic beams
    11. Contact problems
    12. Energy methods
    13. Failure criteria
    References
    Index.

  • Authors

    Marco V. Lubarda, University of Donja Gorcia
    Vlado A. Lubarda is a Professor of Applied Mechanics in the NanoEngineering Department at the University of California, San Diego. He is the co-author of Mechanics of Solids and Materials (Cambridge, 2006).

    Vlado A. Lubarda, University of California, San Diego
    Marko V. Lubarda is an Assistant Professor of Polytechnics at the Univerzitet Donja Gorica, Montenegro.

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