y Problem 1: Two billiard balls with the same mass m move towards one another. Ball one noves in the positive x-direction with a speed of v₁₁, and ball two moves in the negative x-direction with a speed of v2₁. The two balls collide elastically, and both balls change direction after the collision. li X If the initial speeds of the balls were vii = 2.0 m/s and v2i = 1.0 m/s, what would be the final speed and direction of ball two, v2f, in meters per second? Ov2f = 0 m/s. Ov2f = 2.0 m/s, in the negative x-direction. Ov2f = 2.0 m/s, in the positive x-direction. Ov2f = 1.0 m/s, in the positive x-direction. Ov2f = 1.0 m/s, in the negative x-direction. V2i

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Problem 1: Two billiard balls with the same mass m move towards one another. Ball one
moves in the positive x-direction with a speed of v11, and ball two moves in the negative x-direction
with a speed of v2i. The two balls collide elastically, and both balls change direction after the collision.
Vli
If the initial speeds of the balls were vii = 2.0 m/s and v2i = 1.0 m/s, what would be the final speed and direction of ball two, v2f, in meters per second?
Ov2f = 0 m/s.
Ov2f = 2.0 m/s, in the negative x-direction.
Ov2f = 2.0 m/s, in the positive x-direction.
Ov2f = 1.0 m/s, in the positive x-direction.
Ov2f = 1.0 m/s, in the negative x-direction.
Transcribed Image Text:Problem 1: Two billiard balls with the same mass m move towards one another. Ball one moves in the positive x-direction with a speed of v11, and ball two moves in the negative x-direction with a speed of v2i. The two balls collide elastically, and both balls change direction after the collision. Vli If the initial speeds of the balls were vii = 2.0 m/s and v2i = 1.0 m/s, what would be the final speed and direction of ball two, v2f, in meters per second? Ov2f = 0 m/s. Ov2f = 2.0 m/s, in the negative x-direction. Ov2f = 2.0 m/s, in the positive x-direction. Ov2f = 1.0 m/s, in the positive x-direction. Ov2f = 1.0 m/s, in the negative x-direction.
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