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Bowling Pins Bowling Pin, Tenpin Bowling, Bowling Balls, Strike, Sports, Bowling Equipment, Bowling Pins, Bowling, Tenpin Bowling png 329x1000px 58.45KB.white and red bowling pins, Bowling pin Ten-pin bowling Bowling Balls Strike, bowling, game, sport, hand png 1500x844px 464.7KB.The fastest serve of a ping pong ball has been estimated at around 100 kph. Assuming that the block weighs $M = 2$ kg and has dimensions $h = 30$ cm and $w = 10$ cm, and that the ping pong ball weighs $m = 2.7$ g, we get $v_c \approx 90$ m/s $\approx 300$ kph. Where the last approximation comes from $I \approx Mh^2/3$, since $w\ll h$. The impulses $J_A$ and $J_B$ alter the motion at the center of mass by What I am varying is the location of the ball hitting $y_B$ (below or above the center of mass C height of $y_C$), and the impact velocity $v$.īefore the impact the velocity state is (positive $x$ is to the right, measured at the center of mass) There is also a special configuration where the two cases are equivalent. a) There is sufficient friction to keep the base of the pin A fixed (imparting a reaction impulse $J_A$ when hit by the ball, or b) The floor is smooth and the pin will translate and rotate at the same time with $J_A=0$. I will attempt to answer this question with some basic dynamics and some contact mechanics.