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  • Question
  • The maximum shear stress, in the given figure, is equal to __________ of the Mohr's circle.
    The maximum shear stress, in the given figure, is equal to __________ of the Mohr's circle. radius d


  • Options
  • A. radius
  • B. diameter
  • C. circumference
  • D. area

  • Correct Answer
  • radius 


  • Strength of Materials problems


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    • 1. The maximum shear stress in a thin cylindrical shell subjected to internal pressure p is

    • Options
    • A. pd/t
    • B. pd/2t
    • C. pd/4t
    • D. pd/8t
    • Discuss
    • 2. The strain energy stored in a body, when the load is gradually applied, is (where ? = Stress in the material of the body, V = Volume of the body, and E = Modulus of elasticity of the material)

    • Options
    • A.
    • B.
    • C.
    • D.
    • Discuss
    • 3. A body is subjected to a tensile stress of 1200 MPa on one plane and another tensile stress of 600 MPa on a plane at right angles to the former. It is also subjected to a shear stress of 400 MPa on the same planes. The maximum shear stress will be

    • Options
    • A. 400 MPa
    • B. 500 MPa
    • C. 900 MPa
    • D. 1400 MPa
    • Discuss
    • 4. The maximum bending moment of a cantilever beam of length l and carrying a uniformly distributed load of w per unit length lies at the middle of its length.

    • Options
    • A. True
    • B. False
    • Discuss
    • 5. When the shear force diagram between any two points is an inclined straight line, it indicates that there is a uniformly varying load between the two points.

    • Options
    • A. Yes
    • B. No
    • Discuss
    • 6. The section modulus of a rectangular section about an axis through its C.G., is

    • Options
    • A. b/2
    • B. d/2
    • C. bd2/2
    • D. bd2/6
    • Discuss
    • 7. A uniformly distributed load may be assumed to behave like a point load at the centre of gravity of the load for all sorts of calculations.

    • Options
    • A. Correct
    • B. Incorrect
    • Discuss
    • 8. A simply supported beam of length l carries a point load W at a point C as shown in the below figure. The maximum deflection lies at

    • Options
    • A. point A
    • B. point B
    • C. point C
    • D. between points B and C
    • Discuss
    • 9. Young's modulus may be defined as the ratio of

    • Options
    • A. linear stress to lateral strain
    • B. lateral strain to linear strain
    • C. linear stress to linear strain
    • D. shear stress to shear strain
    • Discuss
    • 10. The proof resilience is the maximum strain energy which can be stored in a body.

    • Options
    • A. Yes
    • B. No
    • Discuss


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