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Roarks Formulas For Stress And Strain 8th Ed 8th Edition Warren C Young

  • SKU: BELL-6982468
Roarks Formulas For Stress And Strain 8th Ed 8th Edition Warren C Young
$ 31.00 $ 45.00 (-31%)

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Roarks Formulas For Stress And Strain 8th Ed 8th Edition Warren C Young instant download after payment.

Publisher: McGraw Hill
File Extension: PDF
File size: 8.07 MB
Pages: 1072
Author: Warren C. Young, Richard G. Budynas, Ali M. Sadegh
ISBN: 9780071742481, 0071742484
Language: English
Year: 2011
Edition: 8

Product desciption

Roarks Formulas For Stress And Strain 8th Ed 8th Edition Warren C Young by Warren C. Young, Richard G. Budynas, Ali M. Sadegh 9780071742481, 0071742484 instant download after payment.

THE MOST COMPLETE, UP-TO-DATE GUIDE TO STRESS AND STRAIN FORMULAS Fully revised throughout, Roark's Formulas for Stress and Strain, Eighth Edition, provides accurate and thorough tabulated formulations that can be applied to the stress analysis of a comprehensive range of structural components. 

All equations and diagrams of structural properties are presented in an easy-to-use, thumb, through format. 

This extensively updated edition contains new chapters on fatigue and fracture mechanics, stresses in fasteners and joints, composite materials, and biomechanics. Several chapters have been expanded and new topics have been added. Each chapter now concludes with a summary of tables and formulas for ease of reference. 

This is the definitive resource for designers, engineers, and analysts who need to calculate stress and strain management. 

ROARK'S FORMULAS FOR STRESS AND STRAIN, EIGHTH EDITION, COVERS: 

Behavior of bodies under stress 

Principles and analytical methods 

Numerical and experimental methods

Tension, compression, shear, and combined stress 

Beams; flexure of straight bars 

Bending of curved beams 

Torsion Flat plates 

Columns and other compression members 

Shells of revolution; pressure vessels; pipes 

Bodies in contact undergoing direct bearing and shear stress 

Elastic stability 

Dynamic and temperature stresses 

Stress concentration factors 

Fatigue and fracture mechanics 

Stresses in fasteners and joints 

Composite materials 

Biomechanics

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