Statics and Mechanics of Materials
An Integrated Approach
Wiley (Publisher)
2nd Edition
Published on 31. October 2001
Book
Hardback
736 pages
978-0-471-43446-7 (ISBN)
Shipment within 10-20 days
Description
The second edition of Statics and Mechanics of Materials: An Integrated Approach continues to present students with an emphasis on the fundamental principles, with numerous applications to demonstrate and develop logical, orderly methods of procedure. Furthermore, the authors have taken measure to ensure clarity of the material for the student. Instead of deriving numerous formulas for all types of problems, the authors stress the use of free-body diagrams and the equations of equilibrium, together with the geometry of the deformed body and the observed relations between stress and strain, for the analysis of the force system action of a body.
More details
Product info
GB
Edition
2., Auflage
Language
English
Place of publication
New York
United States
Target group
College/higher education
Professional and scholarly
Product notice
sewn/stitched
Cloth over boards
Dimensions
Height: 663 mm
Width: 529 mm
Thickness: 85 mm
Weight
1524 gr
ISBN-13
978-0-471-43446-7 (9780471434467)
Schweitzer Classification
Other editions
New editions
William F. Riley | Leroy D. Sturges | Don H. Morris
Statics and Mechanics of Materials
An Integrated Approach. International Edition
Book
03/2003
2nd Edition
Wiley
€59.90
Article is exhausted; no reprint
Previous edition
William F. Riley | Leroy D. Sturges | Don H. Morris
Statics and Mechanics of Materials
An Integrated Approach
Book
01/1996
Wiley
€69.38
Article exhausted; check for reprint
Persons
William F. Riley is the author of Statics and Mechanics of Materials: An Integrated Approach, 2nd Edition, published by Wiley. Leroy D. Sturges is the author of Statics and Mechanics of Materials: An Integrated Approach, 2nd Edition, published by Wiley.
Content
* General Principles
* Concurrent Force Systems
* Equilibrium: Concurrent Force Systems
* Stress, Strain, and Deformation: Axial Loading
* Equivalent Force/Moment Systems
* Equilibrium: Rigid Bodies
* Torsional Loading: Shafts
* Flexural Loading: Stresses in Beams
* Flexural Loading: Beam Deflections
* Combined Static Loading
* Columns