(ANS: -388 psi, 2. Determine the stress components acting on the inclined plane AB. a) solve using the method of equilibrium from section 9.1, and b) Solve using the stress-transformation equations developed in Sec. 9.2. 455 psi) 60° ▲ 400 psi B Solve problem 2 from this homework using Mohr's Circle. Annotate the circle provided. (ANS: -388 psi, 455 psi) A * 400 psi k 60 650 psi 650 psi
(ANS: -388 psi, 2. Determine the stress components acting on the inclined plane AB. a) solve using the method of equilibrium from section 9.1, and b) Solve using the stress-transformation equations developed in Sec. 9.2. 455 psi) 60° ▲ 400 psi B Solve problem 2 from this homework using Mohr's Circle. Annotate the circle provided. (ANS: -388 psi, 455 psi) A * 400 psi k 60 650 psi 650 psi
Mechanics of Materials (MindTap Course List)
9th Edition
ISBN:9781337093347
Author:Barry J. Goodno, James M. Gere
Publisher:Barry J. Goodno, James M. Gere
Chapter7: Analysis Of Stress And Strain
Section: Chapter Questions
Problem 7.3.14P: The state of stress on an element along the hydraulic lift cylinder on a truck is trv= — 5 MPaLFind...
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Do the steps don't just explain them please

Transcribed Image Text:(ANS: -388 psi,
2. Determine the stress components acting on the inclined plane AB. a) solve using the method of equilibrium
from section 9.1, and b) Solve using the stress-transformation equations developed in Sec. 9.2.
455 psi)
60°
▲ 400 psi
B
Solve problem 2 from this homework using Mohr's Circle. Annotate the circle provided. (ANS: -388 psi, 455
psi)
A
* 400 psi
k
60
650 psi
650 psi
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Mechanical Engineering
ISBN:
9781337093347
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Barry J. Goodno, James M. Gere
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Cengage Learning