One shaft is in torsion as shown below. If the magnitude of shear stress at point A is 338.3 MPa, calculate the magnitude of the shear stress at point B on the same cross-section as point A: MPa. Calculate your answer to one decimal place. 40 mm UT 30 mm

Structural Analysis
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ISBN:9781337630931
Author:KASSIMALI, Aslam.
Publisher:KASSIMALI, Aslam.
Chapter2: Loads On Structures
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One shaft is in torsion as shown below. If the magnitude of shear stress at point A is 338.3 MPa, calculate the magnitude of the shear stress at point B on the same cross-section as point A:  ___ MPa.

Calculate your answer to one decimal place.

One shaft is in torsion as shown below. If the magnitude of shear stress at point A is 338.3 MPa, calculate the magnitude of the shear stress at point B on the same cross-section as point A: ___ MPa.

Calculate your answer to one decimal place.

**Diagram Explanation:**

The image depicts a cylindrical shaft subjected to torsion, showing a circular cross-section with two points labeled A and B.

- **Point A** is located at the outer surface of the shaft with a radius of 40 mm.
- **Point B** is further inward at a radius of 30 mm from the center of the shaft.
- The applied torque is indicated by a twisting arrow labeled \( T \).

The diagram helps visualize the locations where shear stress needs to be calculated on the shaft's cross-section.
Transcribed Image Text:One shaft is in torsion as shown below. If the magnitude of shear stress at point A is 338.3 MPa, calculate the magnitude of the shear stress at point B on the same cross-section as point A: ___ MPa. Calculate your answer to one decimal place. **Diagram Explanation:** The image depicts a cylindrical shaft subjected to torsion, showing a circular cross-section with two points labeled A and B. - **Point A** is located at the outer surface of the shaft with a radius of 40 mm. - **Point B** is further inward at a radius of 30 mm from the center of the shaft. - The applied torque is indicated by a twisting arrow labeled \( T \). The diagram helps visualize the locations where shear stress needs to be calculated on the shaft's cross-section.
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