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Consider a one-dimensional collision that involves a body of mass m1 originally moving in the positive x direction with speed v0 colliding with a second body of mass m2 originally at rest. The collision could be completely inelastic, with the two bodies sticking together, completely elastic, or somewhere in between. After the collision, m1 moves with velocity v1 while m2 moves with velocity v2 (a) If m1 > m2, then (A) -v0 (b) and (A) -v0 (c) If m1 (A) -v0 (d) and (A) -v0 Consider a one-dimensional collision that involves a body of mass m1 originally moving in the positive x direction with speed v0 colliding with a second body of mass m2 originally at rest. The collision could be completely inelastic, with the two bodies sticking together, completely elastic, or somewhere in between. After the collision, m1 moves with velocity v1 while m2 moves with velocity v2(a) If m1 > m2, then (A) -v0 (b) and (A) -v0 (c) If m1 (A) -v0 (d) and (A) -v0
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