The stresses shown act at a point in a stressed body. The stress magnitudes are S, = 75 MPa and 5, = 210 MPa, acting in the directions indicated in the figure. Using the equilibrium equation approach, determine the normal and shear stresses at this point on the inclined plane shown. Assume ß = 46°. Answer: Sn- MPa Snt = MPa

Principles of Foundation Engineering (MindTap Course List)
9th Edition
ISBN:9781337705028
Author:Braja M. Das, Nagaratnam Sivakugan
Publisher:Braja M. Das, Nagaratnam Sivakugan
Chapter8: Vertical Stress Increase In Soil
Section: Chapter Questions
Problem 8.7P: A 9 ft wide and infinitely long flexible strip load of 800 lb/ft2 is placed on an elastic medium as...
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The stresses shown act at a point in a stressed body. The stress magnitudes are 5, = 75 MPa and 5, = 210 MPa, acting in the directions
indicated in the figure. Using the equilibrium equation approach, determine the normal and shear stresses at this point on the inclined
plane shown. Assume B = 46°.
Answer:
Sn =
MPа
Snt =
MPa
Transcribed Image Text:The stresses shown act at a point in a stressed body. The stress magnitudes are 5, = 75 MPa and 5, = 210 MPa, acting in the directions indicated in the figure. Using the equilibrium equation approach, determine the normal and shear stresses at this point on the inclined plane shown. Assume B = 46°. Answer: Sn = MPа Snt = MPa
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