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Q.A batsman hits back a ball straight in the direction of the bowler without changing its initial speed of 12 ms^-1. If the mass of the ball is 0.15 kg, determine the impulse imparted to the ball. (Assume linear motion of the ball)

Telangana TsbieTelangana Board of Intermediate Education (Intermediate 1st Year) 2020Subjective· 2mImportance★★★★★
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Impulse equals the change in momentum. Since the ball reverses direction at the same speed, the impulse is m(2v)=0.15×24=3.6m(2v) = 0.15 \times 24 = 3.6 kg·m/s.

The ball arrives at the batsman moving towards him (from the bowler) with speed v=12 ms−1v = 12\ \text{ms}^{-1}. Taking the direction from bowler to batsman as positive, the initial momentum of the ball is:

pi=mv=0.15×12=1.8 kg⋅ms−1p_i = mv = 0.15 \times 12 = 1.8\ \text{kg·ms}^{-1}

The batsman hits it straight back towards the bowler without changing its speed, so the ball now moves at 12 ms−112\ \text{ms}^{-1} in the opposite direction:

pf=m(−v)=0.15×(−12)=−1.8 kg⋅ms−1p_f = m(-v) = 0.15 \times (-12) = -1.8\ \text{kg·ms}^{-1}

Impulse = change in momentum:

J=pf−pi=−1.8−1.8=−3.6 kg⋅ms−1J = p_f - p_i = -1.8 - 1.8 = -3.6\ \text{kg·ms}^{-1}

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