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which type of collision would have the least amount of total energy rig…

Question

which type of collision would have the least amount of total energy right before the collision happens?
o a player #84 running and hitting the soccer ball.
o b player #84 running and hitting another player who is also running.
o c player #84 running and hitting the ground.

Explanation:

Step1: Analyze the mass of objects involved

The total energy before collision is related to the kinetic energy formula \(K = \frac{1}{2}mv^{2}\). Assume the speed \(v\) of the player (\(m_{player}\)) is similar in all cases.

  • For option a: The mass involved is \(m_{player}+m_{soccer - ball}\). A soccer - ball has a relatively small mass (\(m_{soccer - ball}\approx0.45\space kg\)).
  • For option b: The mass involved is \(m_{player}+m_{other - player}\). Assuming two players have similar masses (\(m_{player}\approx70 - 80\space kg\)), the total mass \(m = m_{player1}+m_{player2}\) is large.
  • For option c: The mass involved is \(m_{player}+m_{ground}\). But when the player hits the ground, the part of the ground that is effectively in collision (the part that deforms or moves due to the collision) has a very large mass compared to the soccer - ball. However, if we consider the kinetic energy of the moving objects (the player is moving, and the soccer - ball in option a is also moving, while the ground in option c is (effectively) at rest. The kinetic energy of the system before collision is mainly from the moving objects. The soccer - ball has a much smaller mass than another player.

Answer:

A. Player #84 running and hitting the soccer ball.