Rotational Motion 1.0 kg mounted on a fixed vertical axle through ontre can rotate without friction. On the disc a semicircular groove OP is cut. A small ball B of mass 1.5 kg when pushed on the disc towards the centre O, the ball enters the groove with a speed 2.0 m/s and moves through the groove without friction. With what speed will the ball leave the disc? Neglect loss of mass due to cutting the groove. .B a) 1.0 m/s (c) 3.0 m/s (b) 1.5 m/s (d) Insufficient information

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18. A horizontal disc of mass 1.0 kg mounted on a fixed vertical axle through
horizontal disc of mass 1.0 kg mounted on a fixed vertical axle through
centre can rotate without friction. On the disc a semicircular groove
ORis cut, A small ball B of mass 1.5 kg when pushed on the disc towards
the centre O, the ball enters the groove with a speed 2.0 m/s and moves
through the groove without friction. With what speed will the ball leave
the disc? Neglect loss of mass due to cutting the groove.
its centre can rotate without friction. On the disc a semicircular
Rotational Motion
5.9
B
a) 1.0 m/s
(c) 3.0 m/s
(b) 1.5 m/s
(d) Insufficient information
P.
10 Two identical small besds A
Transcribed Image Text:18. A horizontal disc of mass 1.0 kg mounted on a fixed vertical axle through horizontal disc of mass 1.0 kg mounted on a fixed vertical axle through centre can rotate without friction. On the disc a semicircular groove ORis cut, A small ball B of mass 1.5 kg when pushed on the disc towards the centre O, the ball enters the groove with a speed 2.0 m/s and moves through the groove without friction. With what speed will the ball leave the disc? Neglect loss of mass due to cutting the groove. its centre can rotate without friction. On the disc a semicircular Rotational Motion 5.9 B a) 1.0 m/s (c) 3.0 m/s (b) 1.5 m/s (d) Insufficient information P. 10 Two identical small besds A
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