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A thin circular ring of mass M and radius r is rotating about its axis with an angular speed ω. Two particles having mass m each are now attached at diametrically opposite points. The angular speed of the ring will become

1 Answer

+2 votes
by (87.5k points)
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Best answer

The correct answer is (b)

Explanation: 

Moment of inertia of the ring I = Mr² 

Angular Momentum = I⍵ 

When the masses are attached, the moment of Inertia I'= Mr²+2mr² 

=(M+2m)r² 

Let the new angular speed be ⍵'. So the angular momentum =I'⍵'. 

Since the angular momentum is conserved. I'⍵'=I⍵ 

→⍵' = I⍵/I' =⍵Mr²/(M+2m)r² =⍵M/(M+2m)

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