A 6 kg bowling ball moving at 9.5 m/s collides with a 0.62 kg bowling pin, which is scattered at an angle of 84.5° to the initial direction of the bowling ball and with a speed of 13 m/s. Calculate the final velocity of the bowling ball. For the direction, give the absolute value of the angle relative to the initial direction of the of the bowling ball. Magnitude: m/s Direction: degrees Calculate the ratio of the kinetic energy after the collision to the kinetic energy before the collision. Is the collision elastic? ?
A 6 kg bowling ball moving at 9.5 m/s collides with a 0.62 kg bowling pin, which is scattered at an angle of 84.5° to the initial direction of the bowling ball and with a speed of 13 m/s. Calculate the final velocity of the bowling ball. For the direction, give the absolute value of the angle relative to the initial direction of the of the bowling ball. Magnitude: m/s Direction: degrees Calculate the ratio of the kinetic energy after the collision to the kinetic energy before the collision. Is the collision elastic? ?
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Transcribed Image Text:A 6 kg bowling ball moving at 9.5 m/s collides with a 0.62 kg bowling pin, which is scattered at an angle of 84.5° to the initial
direction of the bowling ball and with a speed of 13 m/s.
Calculate the final velocity of the bowling ball. For the direction, give the absolute value of the angle relative to the initial
direction of the of the bowling ball.
Magnitude:
m/s
Direction:
degrees
Calculate the ratio of the kinetic energy after the collision to the kinetic energy before the collision.
Is the collision elastic? ?
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