Principal Stresses and Mohr's Circle — Worked Examples
Use one shear-sign convention throughout each problem. The numerical principal stresses do not depend on how the vertical shear axis is drawn, but angle directions do.
1. Uniaxial Stress as a Plane-Stress State
A point is under tension with and . Determine the in-plane principal stresses and maximum in-plane shear stress.
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0 of 2 Steps Completed2. Biaxial Normal Stress without Shear
A point has , , and . Determine the principal stresses.
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0 of 2 Steps Completed3. Pure Shear
A point is in pure shear with and . Determine the principal stresses.
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0 of 2 Steps Completed4. Principal Stresses from a General Plane-Stress State
Given , , and , determine and .
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0 of 2 Steps Completed5. Maximum Shear from Mixed Tension and Compression
A point has , , and . Determine principal stresses and maximum in-plane shear.
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A point has , , and . Determine and for .
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0 of 2 Steps Completed7. Principal-Plane Orientation
A point has , , and . Determine a principal-plane angle.
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0 of 2 Steps Completed8. Normal Stress on the Maximum-Shear Plane
A point has , , and . Determine maximum in-plane shear and the normal stress acting on those planes.
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0 of 2 Steps Completed9. In-Plane versus Absolute Maximum Shear
The three principal stresses at a point are , , and . Compare the in-plane shear based on and with the absolute maximum shear.
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0 of 2 Steps Completed10. Physical Rotation versus Mohr-Circle Rotation
An element is rotated physically by . Through what angular magnitude is the corresponding radius rotated on Mohr's Circle?
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0 of 2 Steps Completed11. Stress-Trace Invariant Check
For , , and , a transformation gives . Determine using the invariant sum of normal stresses.