A particle is revolving in a circular path of radius 1 m
with constant angular velocity 2 rad/s. The tangential
force acting on the particle is
Give appropriate answer, otherwise I will report it.
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Answer:
your answer is 12+2t.
Explanation:
....
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- A particle is revolving in a circle of radius 1m with an angular speed of 12 rad/s. At t=0, it was subjected to a constant angular acceleration α and its angular speed increased to (480/π) rotation per minute (rpm) in 2 sec. Particles then continues to move attained speed. Calculate
- angular acceleration of the particle
- tangential velocity of the particle as a function of time.
- acceleration of the particle at t=0.5 second and at t=3 seconds
- angular displacement at t=3 seconds
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