Theory of Elastic Stability

Nonfiction, Science & Nature, Technology, Engineering, Civil
Cover of the book Theory of Elastic Stability by James M. Gere, Stephen P. Timoshenko, Dover Publications
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Author: James M. Gere, Stephen P. Timoshenko ISBN: 9780486134802
Publisher: Dover Publications Publication: May 4, 2012
Imprint: Dover Publications Language: English
Author: James M. Gere, Stephen P. Timoshenko
ISBN: 9780486134802
Publisher: Dover Publications
Publication: May 4, 2012
Imprint: Dover Publications
Language: English

The best available guide to the elastic stability of large structures, this book introduces the principles and theory of structural stability. It was co-authored by the father of modern engineering mechanics, Stephen Timoshenko, and James Gere, who updated the materials and worked closely with Dr. Timoshenko. Relevant to aspects of civil, mechanical, and aerospace engineering, this classic covers the essentials of static and dynamic instabilities.
Topics range from theoretical explanations of 2- and 3-D stress and strain to practical applications such as torsion, bending, thermal stress, and wave propagation through solids. Additional subjects include beam columns, curved bars and arches, buckling of rings, and experiments and design formulas. Particularly suitable for advanced undergraduate and graduate students of engineering, this volume is also an indispensable reference for professionals.

View on Amazon View on AbeBooks View on Kobo View on B.Depository View on eBay View on Walmart

The best available guide to the elastic stability of large structures, this book introduces the principles and theory of structural stability. It was co-authored by the father of modern engineering mechanics, Stephen Timoshenko, and James Gere, who updated the materials and worked closely with Dr. Timoshenko. Relevant to aspects of civil, mechanical, and aerospace engineering, this classic covers the essentials of static and dynamic instabilities.
Topics range from theoretical explanations of 2- and 3-D stress and strain to practical applications such as torsion, bending, thermal stress, and wave propagation through solids. Additional subjects include beam columns, curved bars and arches, buckling of rings, and experiments and design formulas. Particularly suitable for advanced undergraduate and graduate students of engineering, this volume is also an indispensable reference for professionals.

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