Two ice skaters face each other in an Olympics doubles figure skating event. Skater 1 has a mass of 40. kg and skater 2 has a mass of 55 kg. Skater 2 pushes skater 1 with a force of magnitude (F) so that skater 1 moves backward at a speed of 5.0 m/s. As a result of the push, the speed of skater 2 is: (note: ignore friction due to the skates on the ice)

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Chapter1: Units, Trigonometry. And Vectors
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Two ice skaters face each other in an Olympics doubles figure skating event. Skater 1 has a mass of 40. kg
and skater 2 has a mass of 55 kg. Skater 2 pushes skater 1 with a force of magnitude (F) so that skater 1
moves backward at a speed of 5.0 m/s. As a result of the push, the speed of skater 2 is: (note: ignore
friction due to the skates on the ice)
3.6 m/s
11 m/s
O2.6 m/s
O 0 m/s
Transcribed Image Text:Two ice skaters face each other in an Olympics doubles figure skating event. Skater 1 has a mass of 40. kg and skater 2 has a mass of 55 kg. Skater 2 pushes skater 1 with a force of magnitude (F) so that skater 1 moves backward at a speed of 5.0 m/s. As a result of the push, the speed of skater 2 is: (note: ignore friction due to the skates on the ice) 3.6 m/s 11 m/s O2.6 m/s O 0 m/s
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