The cylinder has an inner diameter of 4 in. and a wall thickness of 0.1 in. If it is subjected to an internal pressure 100 psi, axial load of 800 lbs, and a torque of 70 lb. ft, yield stress of the material is 20 ksi. Click here to see all formulas Part A - Determine the maximum normal stress in psi O 3000 O 1000 O 2500 O 2000 O 1500 Submit Request Answer Part B - Determine the maximum shear stress in psi O 163 O 407 O 326 O 570 O 244 Submit Request Answer

Mechanics of Materials (MindTap Course List)
9th Edition
ISBN:9781337093347
Author:Barry J. Goodno, James M. Gere
Publisher:Barry J. Goodno, James M. Gere
Chapter8: Applications Of Plane Stress (pressure Vessels, Beams, And Combined Loadings)
Section: Chapter Questions
Problem 8.3.3P: A scuba t a n k (see fig ure) i s bci ng d e signed fo r an internal pressure of 2640 psi with a...
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The cylinder has an inner diameter of 4 in. and a wall thickness of 0.1 in. If it is subjected to an internal pressure 100 psi, axial load of 800 lbs, and a torque of 70 lb. ft, yield stress
of the material is 20 ksi.
Click here to see all formulas
F
F
Part A - Determine the maximum normal stress in psi
O 3000
O 1000
O 2500
O 2000
O 1500
Submit
Request Answer
Part B - Determine the maximum shear stress in psi
O 163
O 407
O 326
O 570
O 244
Submit
Request Answer
Transcribed Image Text:The cylinder has an inner diameter of 4 in. and a wall thickness of 0.1 in. If it is subjected to an internal pressure 100 psi, axial load of 800 lbs, and a torque of 70 lb. ft, yield stress of the material is 20 ksi. Click here to see all formulas F F Part A - Determine the maximum normal stress in psi O 3000 O 1000 O 2500 O 2000 O 1500 Submit Request Answer Part B - Determine the maximum shear stress in psi O 163 O 407 O 326 O 570 O 244 Submit Request Answer
Part C - Determine the factor of safety guarding against failure according to maximum principal stress theory
O 9.14
O 3.20
O 2.29
O 6.86
O 4.57
Submit
Request Answer
Part D - Determine the factor of safety guarding against failure according to maximum shear stress theory
O 11.0
9.14
4.57
O 3.66
O 2.74
Submit
Request Answer
Part E - Determine the factor of safety guarding against failure according to maximum distortion energy theory (Von Mises)
O 10.4
O 4.16
O 7.79
Pearson
Transcribed Image Text:Part C - Determine the factor of safety guarding against failure according to maximum principal stress theory O 9.14 O 3.20 O 2.29 O 6.86 O 4.57 Submit Request Answer Part D - Determine the factor of safety guarding against failure according to maximum shear stress theory O 11.0 9.14 4.57 O 3.66 O 2.74 Submit Request Answer Part E - Determine the factor of safety guarding against failure according to maximum distortion energy theory (Von Mises) O 10.4 O 4.16 O 7.79 Pearson
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