For the situation in the figure below, use momentum conservation to determine (a) the magnitude and (b) the direction of the final velocity of ball 1 after the collision. The angle o = 43.0 °. v01 = 0.900 m/s m1 = 0.150 kg +y 나1 +x "02 = 0.540 m/s m2 = 0.260 kg /35.0 42 = 0.700 m/s (a) +y Vly Uflx (b) (a) Top view of two balls colliding on a horizontal surface. (b) This part of the drawing shows the x and y components of the velocity of ball 1 after the collision.

College Physics
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Chapter1: Units, Trigonometry. And Vectors
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For the situation in the figure below, use momentum conservation to determine (a) the magnitude and (b) the
direction of the final velocity of ball 1 after the collision. The angle o = 43.0 °.
v01 = 0.900 m/s
m1 = 0.150 kg
+y
나1
+x
"02 = 0.540 m/s
m2 = 0.260 kg
/35.0
42 = 0.700 m/s
(a)
+y
Vly
Uflx
(b)
(a) Top view of two balls colliding on a horizontal surface.
(b) This part of the drawing shows the x and y components of the velocity of ball 1 after the collision.
Transcribed Image Text:For the situation in the figure below, use momentum conservation to determine (a) the magnitude and (b) the direction of the final velocity of ball 1 after the collision. The angle o = 43.0 °. v01 = 0.900 m/s m1 = 0.150 kg +y 나1 +x "02 = 0.540 m/s m2 = 0.260 kg /35.0 42 = 0.700 m/s (a) +y Vly Uflx (b) (a) Top view of two balls colliding on a horizontal surface. (b) This part of the drawing shows the x and y components of the velocity of ball 1 after the collision.
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