16. Ball 1 (m = 65g) is rolling at 4.5 m/s [N35°W] on a frictionless surface when it collides with ball 2 (m= 50 g) rolling at 2.0 m/s [S]. After the collision, ball 1 moves at 1.0 m/s [S]. Determine the velocity of the second ball and the percent of energy lost in this collision.
16. Ball 1 (m = 65g) is rolling at 4.5 m/s [N35°W] on a frictionless surface when it collides with ball 2 (m= 50 g) rolling at 2.0 m/s [S]. After the collision, ball 1 moves at 1.0 m/s [S]. Determine the velocity of the second ball and the percent of energy lost in this collision.
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![16. Ball 1 (m = 65g) is rolling at 4.5 m/s [N35°W] on a frictionless surface when it collides with ball 2 (m=
50 g) rolling at 2.0 m/s [S]. After the collision, ball 1 moves at 1.0 m/s [S]. Determine the velocity of the
second ball and the percent of energy lost in this collision.](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F0c19c83d-f659-4fff-bf4e-3e2b8b3697ab%2F5fe1f01e-6bc7-48f2-9e03-f6f7e2e42a51%2Fdjlx9ee_processed.png&w=3840&q=75)
Transcribed Image Text:16. Ball 1 (m = 65g) is rolling at 4.5 m/s [N35°W] on a frictionless surface when it collides with ball 2 (m=
50 g) rolling at 2.0 m/s [S]. After the collision, ball 1 moves at 1.0 m/s [S]. Determine the velocity of the
second ball and the percent of energy lost in this collision.
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