A puck of mass 0.20 kg approaches a second, identical puck that is stationary on frictionless ice. The initial speed of the moving puck is 3.0 m/s. After the collision, one puck leaves with a speed v, at 30° to the original line of motion. The second puck leaves with speed v2 at 60°. (a) Calculate V1 and V2-

College Physics
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Chapter1: Units, Trigonometry. And Vectors
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A puck of mass 0.20 kg approaches a second, identical puck that is stationary on frictionless ice. The initial speed of the moving puck is 3.0 m/s. After the collision, one puck leaves with a speed v1 at 30° to the original line of motion. The second puck leaves with speed v2 at 60°.

A puck of mass 0.20 kg approaches a second, identical puck that is stationary on frictionless ice. The initial speed of the moving puck is 3.0 m/s. After the collision, one puck
leaves with a speed v, at 30° to the original line of motion. The second puck leaves with speed v2 at 60°.
30
60
(a) Calculate Vị and v2.
V1
0.333
X m/s
Transcribed Image Text:A puck of mass 0.20 kg approaches a second, identical puck that is stationary on frictionless ice. The initial speed of the moving puck is 3.0 m/s. After the collision, one puck leaves with a speed v, at 30° to the original line of motion. The second puck leaves with speed v2 at 60°. 30 60 (a) Calculate Vị and v2. V1 0.333 X m/s
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