7.5 Refer to Figure 7.13, which shows a flexible rectangular area. Given: B₁ = 1.22 m, B₂ = 1.83 m, L₁ = 2.44 m, and L₂=3.05 m. If the area is subjected to a uniform load of 144 kN/m², determine the stress increase at a depth of 3.05 m located immediately below point O.

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 8.3.10P: Solve the preceding problem if F =90 mm, F = 42 kN, and t = 40°MPa
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7.5
B(1)
Refer to Figure 7.13, which shows a flexible rectangular
area. Given: B₁ 1.22 m, B₂ 1.83 m, L₁ = 2.44 m, and
L₂= 3.05 m. If the area is subjected to a uniform load of
144 kN/m², determine the stress increase at a depth of 3.05 m
located immediately below point O.
B(2)
2
=
(1)-
3
4
L(2)-
Figure 7.13 Stress below any point of a loaded flexible rectangular area
Transcribed Image Text:7.5 B(1) Refer to Figure 7.13, which shows a flexible rectangular area. Given: B₁ 1.22 m, B₂ 1.83 m, L₁ = 2.44 m, and L₂= 3.05 m. If the area is subjected to a uniform load of 144 kN/m², determine the stress increase at a depth of 3.05 m located immediately below point O. B(2) 2 = (1)- 3 4 L(2)- Figure 7.13 Stress below any point of a loaded flexible rectangular area
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