A 3000kg cannon recoils with a velocity of 1m s−1, when a 15kg cannon ball is fired from it. If the ball is aimed a target 400m away, calculate the force (in N) that the ball exerts on the target, when it hits it.
750
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Solution
The correct option is A 750 Given
The mass of the cannon ball, m1=15kg
The mass of the cannon, m2=3000kg
Distance to the target, d=400m
The recoil velocity of the cannon, v2=1m s−1
If the velocity of the cannon ball is v1, then according to the law of conservation of momentum, m1v1+m2v2=0, as both the cannon and the cannon ball are initially at rest.
v1=−m2v2m1=300015=200m s−1
According to the third equation of motion, v2−u2=2as
v=200m s−1;u=0;s=d=400m
The acceleration of the cannon ball, a=v22s=200×2002×400=50m s−2
The force exerted by the cannon ball on the target is given by Newton's second law of motion as: F =m1a