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In the figure shown below, the relative velocity of link 1 with respect to link 2 is 15 m/s. Link 2 rotates at a constant speed of 150 rpm. The magnitude of the Coriolis component of acceleration of link 1 is
  • a)
    201 m/s2
  • b)
    239 m/s2
  • c)
    418 m/s2
  • d)
    471 m/s2
Correct answer is option 'D'. Can you explain this answer?
Verified Answer
In the figure shown below, the relative velocity of link 1 with respe...
Concept:
When a point on one link is sliding along another rotating link, then the Coriolis component of the acceleration is to be calculated.
ac = 2 ωV
Where ω = Angular velocity of the link OA (rad/s) and v = Velocity of slider B with respect to the coincident point C (m/s)
Calculation:
Given: V = 15 m/s, ω = 150 rpm
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In the figure shown below, the relative velocity of link 1 with respect to link 2 is 15 m/s. Link 2 rotates at a constant speed of 150 rpm. The magnitude of the Coriolis component of acceleration of link 1 isa)201 m/s2b)239 m/s2c)418 m/s2d)471 m/s2Correct answer is option 'D'. Can you explain this answer?
Question Description
In the figure shown below, the relative velocity of link 1 with respect to link 2 is 15 m/s. Link 2 rotates at a constant speed of 150 rpm. The magnitude of the Coriolis component of acceleration of link 1 isa)201 m/s2b)239 m/s2c)418 m/s2d)471 m/s2Correct answer is option 'D'. Can you explain this answer? for SSC 2024 is part of SSC preparation. The Question and answers have been prepared according to the SSC exam syllabus. Information about In the figure shown below, the relative velocity of link 1 with respect to link 2 is 15 m/s. Link 2 rotates at a constant speed of 150 rpm. The magnitude of the Coriolis component of acceleration of link 1 isa)201 m/s2b)239 m/s2c)418 m/s2d)471 m/s2Correct answer is option 'D'. Can you explain this answer? covers all topics & solutions for SSC 2024 Exam. Find important definitions, questions, meanings, examples, exercises and tests below for In the figure shown below, the relative velocity of link 1 with respect to link 2 is 15 m/s. Link 2 rotates at a constant speed of 150 rpm. The magnitude of the Coriolis component of acceleration of link 1 isa)201 m/s2b)239 m/s2c)418 m/s2d)471 m/s2Correct answer is option 'D'. Can you explain this answer?.
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