Q2. (a) A 1 kg ball initially travelling at 7 m/s strikes on the lower end of a 5 kg bar AB, as shown in Figure Q2(a). The bar is hinged at A and is initially at rest. The coefficient of restitution between the rod and sphere is 0.7. (i) Determine the angular velocity of the bar and the velocity of the ball immediately after impact. (ii) From your working in Q2(a)(i), explain how the ball and rod masses can influence the angular velocity of the bar and the velocity of the ball immediately after impact. A L/2 G L=800 mm 7 m/s В Figure Q2(a)

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Q2.
(а)
A 1 kg ball initially travelling at 7 m/s strikes on the lower end of a 5 kg bar AB,
as shown in Figure Q2(a). The bar is hinged at A and is initially at rest. The
coefficient of restitution between the rod and sphere is 0.7.
(i)
Determine the angular velocity of the bar and the velocity of the ball
immediately after impact.
(ii)
From your working in Q2(a)(i), explain how the ball and rod masses can
influence the angular velocity of the bar and the velocity of the ball
immediately after impact.
A
L/2
G
L=800 mm
7 m/s
В
Figure Q2(a)
Transcribed Image Text:Q2. (а) A 1 kg ball initially travelling at 7 m/s strikes on the lower end of a 5 kg bar AB, as shown in Figure Q2(a). The bar is hinged at A and is initially at rest. The coefficient of restitution between the rod and sphere is 0.7. (i) Determine the angular velocity of the bar and the velocity of the ball immediately after impact. (ii) From your working in Q2(a)(i), explain how the ball and rod masses can influence the angular velocity of the bar and the velocity of the ball immediately after impact. A L/2 G L=800 mm 7 m/s В Figure Q2(a)
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