The stresses shown act at a point in a stressed body. The stress magnitudes are S, = 85 MPa and S, - 200 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 = 48°. Answer: Sn- MPa Snt- MPa

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The stresses shown act at a point in a stressed body. The stress magnitudes are Sx = 85 MPa and S, =- 200 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= 48°
The stresses shown act at a point in a stressed body. The stress magnitudes are S, = 85 MPa and S, = 200 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 = 48°.
Answer:
Sn-
MPа
Snt=
MPa
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Transcribed Image Text:The stresses shown act at a point in a stressed body. The stress magnitudes are S, = 85 MPa and S, = 200 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 = 48°. Answer: Sn- MPа Snt= MPa Save for Later Attempts: 0 of 1 used Submit Answer
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