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Mechanics of Materials / Ferdinand P. Beer ... [et al.].

Contributor(s): Material type: TextTextPublication details: Chennai McGraw Hill Education (India) Pvt. Ltd. 2018Edition: 7th EdDescription: 831p. : ill. ; Appendices: A1-A30; Photo Credits: C1; Index: I1-I6; Answers to Problems: AN-1 to An-14; 23cmISBN:
  • 9789339217624
Subject(s): DDC classification:
  • 23rd Ed. 620.1123 BEE
Online resources:
List(s) this item appears in: New Arrivals Mar-Sept.2021
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Holdings
Item type Current library Collection Call number Status Notes Date due Barcode Course reserves
Text Book VIT-AP General Stacks 620.1123 BEE (Browse shelf(Opens below)) In transit from VIT-AP to School of Mechanical Engg Section since 2024-10-05 MECH 019559
Text Book VIT-AP General Stacks 620.1123 BEE (Browse shelf(Opens below)) In transit from VIT-AP to School of Mechanical Engg Section since 2024-09-04 MECH 019395

Strength of Materials

Text Book VIT-AP General Stacks 620.1123 BEE (Browse shelf(Opens below)) Available MECH 012741

Advance Strength of Materials

Reference Book VIT-AP General Stacks Reference 620.1123 BEE (Browse shelf(Opens below)) Not for loan MECH 012372

It includes Index and Appendix.

The book is extremely popular for the teaching of solid mechanics/ strength of materials . It is used by thousands of students around the world since publication. In India extremely popular in A and A+ colleges because of its balanced application and theoretical approach. In current edition this approach is maintained with variety of pedagogy (application and text based) and text to create comprehensive understating of the subject area.

Salient Features:

• SMART Problem-Solving Methodology is Employed in this edition. Strategy, Modeling, Analysis, and Reflect and Think in all sample problems is used to stimulate the understanding of whole concept.
• Use of free-body diagrams to determine external and internal forces
• Mathematical descriptions with logical flow of topics
• Computer problems at the end of each chapter

Contents

1. Introduction Concept of Stress
2. Stress and Strain Axial Loading
3. Torsion
4. Pure Bending
5. Analysis and Design of Beams for Bending
6. Shearing Stresses in Beams and Thin Walled Members
7. Transformers of stress and Strain
8. Principal Stresses under Given Loading Conditions
9. Deflection of Beams
10. Columns
11. Energy Methods

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