Radial & Tangential Acceleration for Non Uniform Circular Motion
The kinetic e...
Question
The kinetic energy K of a particle moving along a circle of radius R depends on the distance covered as K=as2, where a is a constant. The force acting on the particle is
A
2as2R
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B
2as(1+s2R2)12
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C
2as
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D
2aR2s
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Solution
The correct option is B2as(1+s2R2)12 According to given problem, K=12Mv2=as2 (Here, M= mass) ⇒v=s√2aM...(i)
So, radial acceleration aR=v2R=2as2MR