A curling stone travelling at 5.0 m/s collides with a stationary stone of the same mass. Following the collision, the two stones travel at angles of 17 and 38 at opposite directions with respect to the initial motion of the first stone a. Draw a diagram of the stones' motion b. Calculate the speed of each stone after the collision. [V,=3.76, v=1.78]

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Chapter1: Units, Trigonometry. And Vectors
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4. A curling stone travelling at 5.0 m/s collides with a stationary stone
of the same mass. Following the collision, the two stones travel at
angles of 17and 38 at opposite directions with respect to the
initial motion of the first stone
a. Draw a diagram of the stones' motion
b. Calculate the speed of each stone after the collision.
[V,=3.76, v,=1.78]
Transcribed Image Text:4. A curling stone travelling at 5.0 m/s collides with a stationary stone of the same mass. Following the collision, the two stones travel at angles of 17and 38 at opposite directions with respect to the initial motion of the first stone a. Draw a diagram of the stones' motion b. Calculate the speed of each stone after the collision. [V,=3.76, v,=1.78]
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