*9-4. The state of stress at a point in a member is shown on the element. Determine the stress components acting on the inclined plane AB. Solve the problem using the method of equilibrium described in Sec. 9.1. 9-5. Solve Prob. 9-4 using the stress-transformation equations developed in Sec. 9.2. Show the result on a sketch.
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Let plane AB be inclined so its outward unit normal n makes an angle θ with the +x-axis (i.e. n = [cosθ, sinθ]). We wish to find the normal stress σn and the shear stress τn acting on plane AB. Step 2 (traction vector by equilibrium / Cauchy) - The traction Show more…
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*9-4. The state of stress at a point in a member is shown on the element. Determine the stress components acting on the inclined plane AB. Solve the problem using the method of equilibrium described in Sec. 9.1.
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The state of stress at a point in a member is shown on the element. Determine the stress components acting on the inclined plane AB. Solve the problem using the method of equilibrium described in Sec. 9.1.
The state of stress at a point in a member is shown on the element. Determine the stress components acting on the inclined plane $A B .$ Solve the problem using the method of equilibrium described in $\operatorname{Sec} .9 .1$
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