Statics and Mechanics of Materials https://www.mheducation.com/cover-images/Jpeg_400-high/0073398160.jpeg 2 9780073398167 The approach of the Beer and Johnston series has been appreciated by hundreds of thousands of students over decades of engineering education. The Statics and Mechanics of Materials text uses this proven methodology in an extensively revised edition, aimed at programs that teach these two subjects together or as a two semester sequence. Maintaining the proven methodology and pedagogy of the Beer and Johnson series, Statics and Mechanics of Materials combines the theory and application behind these two subjects into one cohesive text. A wealth of problems, Beer and Johnston's hallmark sample problems, and valuable review and summary sections at the end of each chapter, highlight the key pedagogy of the text. McGraw-Hill's Connect, is also available as an optional, add on item. Connect is the only integrated learning system that empowers students by continuously adapting to deliver precisely what they need, when they need it, how they need it, so that class time is more effective. Connect allows the professor to assign homework, quizzes, and tests easily and automatically grades and records the scores of the student's work. Problems are randomized to prevent sharing of answers an may also have a "multi-step solution" which helps move the students' learning along if they experience difficulty.
Statics and Mechanics of Materials

Statics and Mechanics of Materials

2nd Edition
By Ferdinand Beer and E. Russell Johnston, Jr. and John DeWolf and David Mazurek
ISBN10: 0073398160
ISBN13: 9780073398167
Copyright: 2017
Product Details +
09780073398167

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Program Details

1) Introduction

2) Statics of Particles

3) Rigid Bodies: Equivalent Systems of Forces

4) Equilibrium of Rigid Bodies

5) Distributed Forces: Centroids and Centers of Gravity

6) Analysis of Structures

7) Distributed Forces: Moments of Inertia

8) Concept of Stress

9) Stress and Strain-Axial Loading

10) Torsion

11) Pure Bending

12) Analysis and Design of Beams for Bending

13) Shearing Stresses in Beams and Thin-Walled Members

14) Transformations of Stress

15) Deflection of Beams

16) Columns

Appendices

Index

Answers to Problems