One object is at rest, and another is moving. The two collide in a one-dimensional, completely inelastic collision. In other words, they stick together after the collision and move off with a common velocity. Momentum is conserved. The speed of the object tha is moving initially is 24 m/s. The masses of the two objects are 3.2 and 7.9 kg. Determine the final speed of the two-object system after the collision for the case (a) when the large-mass object is the one moving initially and the case (b) when the small-mass object is the one moving initially. (a) Vf =

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Chapter9: Linear Momentum And Collisions
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Chapter 07, Problem 30 GO
One object is at rest, and another is moving. The two collide in a one-dimensional, completely inelastic collision. In other words,
they stick together after the collision and move off with a common velocity. Momentum is conserved. The speed of the object that
is moving initially is 24 m/s. The masses of the two objects are 3.2 and 7.9 kg. Determine the final speed of the two-object
system after the collision for the case (a) when the large-mass object is the one moving initially and the case (b) when the
small-mass object is the one moving initially.
(a) Vf =
(b) Vf =
Transcribed Image Text:Chapter 07, Problem 30 GO One object is at rest, and another is moving. The two collide in a one-dimensional, completely inelastic collision. In other words, they stick together after the collision and move off with a common velocity. Momentum is conserved. The speed of the object that is moving initially is 24 m/s. The masses of the two objects are 3.2 and 7.9 kg. Determine the final speed of the two-object system after the collision for the case (a) when the large-mass object is the one moving initially and the case (b) when the small-mass object is the one moving initially. (a) Vf = (b) Vf =
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