A 60.0-kg skier with an initial speed of 12.0 m/s coasts up a 2.50-m-high rise as shown in Figure 7.40. Find her final speed at the top, given that the coefficient of friction between her skis and the snow is 0.0800. (Hint: Find the distance traveled up the incline assuming a straight-line path as shown in the figure.) V = ? KE 2.5 m 35°

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Chapter8: Potential Energy And Conservation Of Energy
Section: Chapter Questions
Problem 60P: A 60.0-kg skier with an initial speed of 12.0 m/s coasts up a 2.50-m high rise as shown. Find her...
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A 60.0-kg skier with an initial speed of 12.0 m/s coasts up a 2.50-m-high rise as shown in
Figure 7.40. Find her final speed at the top, given that the coefficient of friction between her
skis and the snow is 0.0800. (Hint: Find the distance traveled up the incline assuming a
straight-line path as shown in the figure.)
V = ?
KE
2.5 m
35°
Transcribed Image Text:A 60.0-kg skier with an initial speed of 12.0 m/s coasts up a 2.50-m-high rise as shown in Figure 7.40. Find her final speed at the top, given that the coefficient of friction between her skis and the snow is 0.0800. (Hint: Find the distance traveled up the incline assuming a straight-line path as shown in the figure.) V = ? KE 2.5 m 35°
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