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An L-shaped elastic member ABC with slender arms AB and BC of uniform cross-section is clamped at end A and connected to a pin at end C. The pin remains in continuous contact with and is constrained to move in a smooth horizontal slot. The section modulus of the member is same in both the arms. The end C is subjected to a horizontal force P and all the deflections are in the plane of the figure. Given the length AB is 4�� and length BC is ��, the magnitude and direction of the normal force on the pin from the slot, respectively, are
  • a)
    3��/8, and downwards
  • b)
    5��/8, and upwards
  • c)
    ��/4, and downwards
  • d)
    3��/4, and upwards
Correct answer is option 'A'. Can you explain this answer?
Most Upvoted Answer
An L-shaped elastic member ABC with slender arms AB and BC of uniform ...

Deflection in x-direction due to load P

Deflection in y-direction due to load P



From equation (i) and (ii)

F = 3P / 8 downward.
Hence, the correct option is (A).
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An L-shaped elastic member ABC with slender arms AB and BC of uniform cross-section is clamped at end A and connected to a pin at end C. The pin remains in continuous contact with and is constrained tomove in a smooth horizontal slot. The section modulus of the member is same in both the arms. The end C is subjected to a horizontal force P and all the deflections are in the plane of the figure. Given the length AB is 4�� and length BC is ��, the magnitude and direction of the normal force on the pin from the slot, respectively, area)3��/8, and downwardsb)5��/8, and upwardsc)��/4, and downwardsd)3��/4, and upwardsCorrect answer is option 'A'. Can you explain this answer?
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An L-shaped elastic member ABC with slender arms AB and BC of uniform cross-section is clamped at end A and connected to a pin at end C. The pin remains in continuous contact with and is constrained tomove in a smooth horizontal slot. The section modulus of the member is same in both the arms. The end C is subjected to a horizontal force P and all the deflections are in the plane of the figure. Given the length AB is 4�� and length BC is ��, the magnitude and direction of the normal force on the pin from the slot, respectively, area)3��/8, and downwardsb)5��/8, and upwardsc)��/4, and downwardsd)3��/4, and upwardsCorrect answer is option 'A'. Can you explain this answer? for Mechanical Engineering 2024 is part of Mechanical Engineering preparation. The Question and answers have been prepared according to the Mechanical Engineering exam syllabus. Information about An L-shaped elastic member ABC with slender arms AB and BC of uniform cross-section is clamped at end A and connected to a pin at end C. The pin remains in continuous contact with and is constrained tomove in a smooth horizontal slot. The section modulus of the member is same in both the arms. The end C is subjected to a horizontal force P and all the deflections are in the plane of the figure. Given the length AB is 4�� and length BC is ��, the magnitude and direction of the normal force on the pin from the slot, respectively, area)3��/8, and downwardsb)5��/8, and upwardsc)��/4, and downwardsd)3��/4, and upwardsCorrect answer is option 'A'. Can you explain this answer? covers all topics & solutions for Mechanical Engineering 2024 Exam. Find important definitions, questions, meanings, examples, exercises and tests below for An L-shaped elastic member ABC with slender arms AB and BC of uniform cross-section is clamped at end A and connected to a pin at end C. The pin remains in continuous contact with and is constrained tomove in a smooth horizontal slot. The section modulus of the member is same in both the arms. The end C is subjected to a horizontal force P and all the deflections are in the plane of the figure. Given the length AB is 4�� and length BC is ��, the magnitude and direction of the normal force on the pin from the slot, respectively, area)3��/8, and downwardsb)5��/8, and upwardsc)��/4, and downwardsd)3��/4, and upwardsCorrect answer is option 'A'. Can you explain this answer?.
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