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A batsman hits back a ball straight in a direction of bowler with out changing its initial speed of 12 m/sec. If the mass of the ball is 0.15 kg, the impulse imparted to the ball.
Most Upvoted Answer
A batsman hits back a ball straight in a direction of bowler with out ...
Impulse= change in momentum
=0.15×12-(-0.15×12)
=1.8+1.8=3.6N
Community Answer
A batsman hits back a ball straight in a direction of bowler with out ...
Impulse imparted to the ball when hit by the batsman

When a batsman hits the ball, he imparts an impulse to the ball. Impulse is defined as the product of force and the time for which the force acts on an object. In this case, the force is applied by the bat on the ball, and the time for which the force acts is the time it takes for the ball to leave the bat.

The impulse-momentum principle

According to the impulse-momentum principle, the impulse experienced by an object is equal to the change in momentum of the object. Momentum is defined as the product of mass and velocity. So, the impulse imparted to the ball can be calculated using the formula:

Impulse = Change in momentum

Calculation of impulse

In this case, the ball is hit straight back towards the bowler without changing its initial speed of 12 m/s. Since the speed remains constant, there is no change in velocity. Therefore, the change in momentum is zero.

Impulse = Change in momentum = 0

Explanation

When the batsman hits the ball, the bat exerts a force on the ball for a very short duration of time. This force causes a change in the ball's momentum. However, since the ball's velocity remains the same, the change in momentum is zero.

Conclusion

In conclusion, when the batsman hits the ball straight back towards the bowler without changing its initial speed of 12 m/s, the impulse imparted to the ball is zero. This means that there is no change in the ball's momentum.
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A batsman hits back a ball straight in a direction of bowler with out changing its initial speed of 12 m/sec. If the mass of the ball is 0.15 kg, the impulse imparted to the ball.
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