The copper pipe [G = 7,000 ksi] has an outside diameter of 3.000 in. and a wall thickness of 0.125 in. The pipe is subjected to a uniformly distributed torque of t= 70 Ib-ft/ft along its entire length. Using a = 2.0 ft, b = 4.0 ft, and c= 8.5 ft, determine a) the maximum shear stress in the pipe. b) the rotation angle @c at the free end of the shaft. B Answers: a) Tmax = i psi b) Pc= rad

Mechanics of Materials (MindTap Course List)
9th Edition
ISBN:9781337093347
Author:Barry J. Goodno, James M. Gere
Publisher:Barry J. Goodno, James M. Gere
Chapter5: Stresses In Beams (basic Topics)
Section: Chapter Questions
Problem 5.9.3P: A vertical pole consisting of a circular tube of outer diameter 5 in. and inner diameter 4.5 in. is...
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The copper pipe [G = 7,000 ksi] has an outside diameter of 3.000 in. and a wall thickness of 0.125 in. The pipe is subjected to a
uniformly distributed torque of t= 70 Ib-ft/ft along its entire length. Using a = 2.0 ft, b = 4.0 ft, and c = 8.5 ft, determine
(a) the maximum shear stress in the pipe.
(b) the rotation angle oc at the free end of the shaft.
B
Answers:
(a) Tmax = i
psi
(b) Фс- і
rad
Transcribed Image Text:The copper pipe [G = 7,000 ksi] has an outside diameter of 3.000 in. and a wall thickness of 0.125 in. The pipe is subjected to a uniformly distributed torque of t= 70 Ib-ft/ft along its entire length. Using a = 2.0 ft, b = 4.0 ft, and c = 8.5 ft, determine (a) the maximum shear stress in the pipe. (b) the rotation angle oc at the free end of the shaft. B Answers: (a) Tmax = i psi (b) Фс- і rad
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