Two blocks of masses m = 1.96 kg and m2 = 5.14 kg are each released...
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Two blocks of masses m₁ = 1.96 kg and m2 = 5.14 kg are each released from rest at a height of h = 4.94 m on a frictionless track, as shown in the figure, and undergo an elastic head-on collision. m₁ m2 Determine the velocity of the m₁ block just before the collision. (Use positive sign if the motion is to the right, negative if it is to the left.) Submit Answer Tries 0/99 Determine the velocity of the m2 block just after the collision. (Use positive sign if the motion is to the right, negative if it is to the left.) Submit Answer Tries 0/99 Determine the velocity of the m₁ block just after the collision. (Use positive sign if the motion is to the right, negative if it is to the left.) Submit Answer Tries 0/99 Determine the maximum height to which m2 rises after the collision. Submit Answer Tries 0/99 Determine the maximum height to which m₁ rises after the collision. Submit Answer Tries 0/99 Two blocks of masses m₁ = 1.96 kg and m2 = 5.14 kg are each released from rest at a height of h = 4.94 m on a frictionless track, as shown in the figure, and undergo an elastic head-on collision. m₁ m2 Determine the velocity of the m₁ block just before the collision. (Use positive sign if the motion is to the right, negative if it is to the left.) Submit Answer Tries 0/99 Determine the velocity of the m2 block just after the collision. (Use positive sign if the motion is to the right, negative if it is to the left.) Submit Answer Tries 0/99 Determine the velocity of the m₁ block just after the collision. (Use positive sign if the motion is to the right, negative if it is to the left.) Submit Answer Tries 0/99 Determine the maximum height to which m2 rises after the collision. Submit Answer Tries 0/99 Determine the maximum height to which m₁ rises after the collision. Submit Answer Tries 0/99
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a Before the collision both blocks have gravitational potential energy which is converted to kinetic ... View the full answer
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