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Advanced Mechanics of Materials and Applied Elasticity
Contributor(s): Armenākas, Anthony E. (Author)

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ISBN: 0849398991     ISBN-13: 9780849398995
Publisher: CRC Press
OUR PRICE: $190.00  

Binding Type: Hardcover - See All Available Formats & Editions
Published: August 2005
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Temporarily out of stock - Will ship within 2 to 5 weeks

Annotation: This book presents both differential equation and integral formulations of boundary value problems for computing the stress and displacement fields of solid bodies at two levels of approximation - isotropic linear theory of elasticity as well as theories of mechanics of materials. Moreover, the book applies these formulations to practical solutions in detailed, easy-to-follow examples. Advanced Mechanics of Materials and Applied Elasticity presents modern and classical methods of analysis in current notation and in the context of current practices. The author's well-balanced choice of topics, clear and direct presentation, and emphasis on the integration of sophisticated mathematics with practical examples offer students in civil, mechanical, and aerospace engineering an unparalleled guide and reference for courses in advanced mechanics of materials, stress analysis, elasticity, and energy methods in structural analysis.
Additional Information
BISAC Categories:
- Science | Nanoscience
- Science | Mechanics - General
Dewey: 620.112
LCCN: 2005044001
Physical Information: 2.21" H x 7.34" W x 10.24" L (4.15 lbs) 996 pages
Features: Illustrated, Index, Table of Contents
 
Descriptions, Reviews, Etc.
Publisher Description:

This book presents both differential equation and integral formulations of boundary value problems for computing the stress and displacement fields of solid bodies at two levels of approximation - isotropic linear theory of elasticity as well as theories of mechanics of materials. Moreover, the book applies these formulations to practical solutions in detailed, easy-to-follow examples.

Advanced Mechanics of Materials and Applied Elasticity presents modern and classical methods of analysis in current notation and in the context of current practices. The author's well-balanced choice of topics, clear and direct presentation, and emphasis on the integration of sophisticated mathematics with practical examples offer students in civil, mechanical, and aerospace engineering an unparalleled guide and reference for courses in advanced mechanics of materials, stress analysis, elasticity, and energy methods in structural analysis.

 
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