ISBN-10:
0071830804
ISBN-13:
9780071830805
Pub. Date:
12/13/2013
Publisher:
McGraw-Hill Professional Publishing
Schaum's Outline of Strength of Materials, 6th Edition / Edition 6

Schaum's Outline of Strength of Materials, 6th Edition / Edition 6

by William Nash, Merle C. Potter
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Overview

Tough Test Questions? Missed Lectures? Not Enough Time?

Fortunately, there's Schaum's. This all-in-one-package includes more than 600 fully solved problems, examples, and practice exercises to sharpen your problem-solving skills. Plus, you will have access to 22 detailed videos featuring instructors who explain the most commonly tested problems—it's just like having your own virtual tutor! You'll find everything you need to build confidence, skills, and knowledge for the highest score possible.


More than 40 million students have trusted Schaum's to help them succeed in the classroom and on exams. Schaum's is the key to faster learning and higher grades in every subject. Each Outline presents all the essential course information in an easy-to-follow, topic-by-topic format. You also get hundreds of examples, solved problems, and practice exercises to test your skills.


This Schaum's Outline gives you

  • 618 fully solved problems
  • Extra practice on topics such as determinate force systems, torsion, cantilever beams, and more
  • Support for all the major textbooks for strength of materials courses


Fully compatible with your classroom text, Schaum's highlights all the important facts you need to know. Use Schaum's to shorten your study time—and get your best test scores!


Schaum's Outlines—Problem Solved.

Product Details

ISBN-13: 9780071830805
Publisher: McGraw-Hill Professional Publishing
Publication date: 12/13/2013
Pages: 208
Sales rank: 624,571
Product dimensions: 8.60(w) x 10.70(h) x 0.50(d)

About the Author

William Nash, was a professor of civil engineering at the University of Massachusetts, Amherst.
Merle Potter is Professor Emeritus of mechanical engineering at Michigan State University.

Table of Contents

1. Tension and Compression
2. Statically Indeterminate Force Systems. Tension and Compression
3. Thin-Walled Pressure Vessels
4. Direct Shear Stresses
5. Torsion
6. Shearing Force and Bending Moment
7. Centroids, Moments of Inertia, and Products of Inertia of Plane Areas
8. Stresses in Beams
9. Elastic Deflection of Beams: Double-Integration Method
10. Elastic Deflection of Beams: Method of Singularity Functions
11. Statically Indeterminate Elastic Beams
12. Special Topics in Elastic Beam Theory
13. Plastic Deformations of Beams
14. Columns
15. Strain Energy Methods
16. Combined Stresses
17. Members Subject to Combined Loadings; Theories of Failure

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