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Introduction to the Mechanics of Deformable Solids: Bars and Beams
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Introduction to the Mechanics of Deformable Solids: Bars and Beams Hardcover - 2012 - 2013th Edition

by David H. Allen


From the publisher

Introduction to the Mechanics of Deformable Solids: Bars and Beams introduces the theory of beams and bars, including axial, torsion, and bending loading and analysis of bars that are subjected to combined loadings, including resulting complex stress states using Mohr's circle. The book provides failure analysis based on maximum stress criteria and introduces design using models developed in the text. Throughout the book, the author emphasizes fundamentals, including consistent mathematical notation.
The author also presents the fundamentals of the mechanics of solids in such a way that the beginning student is able to progress directly to a follow-up course that utilizes two- and three-dimensional finite element codes imbedded within modern software packages for structural design purposes. As such, excessive details included in the previous generation of textbooks on the subject are obviated due to their obsolescence with the availability of today's finite element software packages.

From the rear cover

Introduction to the Mechanics of Deformable Solids: Bars and Beams introduces the theory of beams and bars, including axial, torsion, and bending loading and analysis of bars that are subjected to combined loadings, including resulting complex stress states using Mohr's circle. The book provides failure analysis based on maximum stress criteria and introduces design using models developed in the text. Throughout the book, the author emphasizes fundamentals, including consistent mathematical notation. The author also presents the fundamentals of the mechanics of solids in such a way that the beginning student is able to progress directly to a follow-up course that utilizes two- and three-dimensional finite element codes imbedded within modern software packages for structural design purposes. As such, excessive details included in the previous generation of textbooks on the subject are obviated due to their obsolescence with the availability of today's finite element software packages. This book also:

  • Features a highly visual pedagogy that emphasizes how visual representation of models leads to mathematical models
  • Pays careful attention to the history of mechanics and includes a historical chapter
  • Includes a separate chapter on structural design
  • Maintains congruity of notation and approach to all mechanics models
  • Features 200 illustrations

Introduction to the Mechanics of Deformable Solids: Bars and Beams is an ideal book for undergraduate students taking their first course in mechanics of solids.

Details

  • Title Introduction to the Mechanics of Deformable Solids: Bars and Beams
  • Author David H. Allen
  • Binding Hardcover
  • Edition number 2013th
  • Edition 2013
  • Pages 220
  • Volumes 1
  • Language ENG
  • Publisher Springer
  • Date 2012-08-09
  • Illustrated Yes
  • ISBN 9781461440024 / 1461440025
  • Weight 1.3 lbs (0.59 kg)
  • Dimensions 9.2 x 6.3 x 0.7 in (23.37 x 16.00 x 1.78 cm)
  • Themes
    • Aspects (Academic): Science/Technology Aspects
  • Library of Congress subjects Deformations (Mechanics)
  • Library of Congress Catalog Number 2012937796
  • Dewey Decimal Code 620.112

About the author

Dr. David Allen is Dean of the College of Engineering and Computer Science, University of Texas-Pan American and formerly, 2002-2010, Dean of the College of Engineering, University of Nebraska.
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Introduction to the Mechanics of Deformable Solids: Bars and Beams
Stock Photo: Cover May Be Different

Introduction to the Mechanics of Deformable Solids: Bars and Beams

by H. Allen, David

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Introduction to the Mechanics of Deformable Solids: Bars and Beams

Introduction to the Mechanics of Deformable Solids: Bars and Beams

by David H. Allen

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ISBN 10 / ISBN 13
9781461440024 / 1461440025
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Hardback. New. This book introduces the theory of beams and bars, including axial, torsion, and bending loading. It provides failure analysis based on maximum stress criteria and introduces design using models developed in the text.
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