A 13.0 kg stone slides down a snow-covered hill (Figure 1), leaving point A at a speed of 12.0 m/s. There is no friction on the hill between points A and B, but there is friction on the level ground at the bottom of the hill, between B and the wall. After entering the rough horizontal region, the stone travels 100 m and then runs into a very long, light spring with force constant 2.10 N/m. The coefficients of kinetic and static friction between the stone and the horizontal ground are 0.20 and 0.80, respectively. • Part A What is the speed of the stone when it reaches point B? Express your answer in meters per second to three significant figures. Πνα ΑΣφ m/s Submit Request Answer | - • Part B How far will the stone compress the spring? Express your answer in meters to three significant figures. να ΑΣφ ? Figure < 1 of 1> m Submit Request Answer Part C 20 m Will the stone move again after it has been stopped by the spring? В VK 15 m Rough O yes O no

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Chapter1: Units, Trigonometry. And Vectors
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A 13.0 kg stone slides down a snow-covered hill (Figure 1), leaving point A at a speed of
12.0 m/s. There is no friction on the hill between points A and B, but there is friction on
the level ground at the bottom of the hill, between B and the wall. After entering the rough
Part A
What is the speed of the stone when it reaches point B?
horizontal region, the stone travels 100 m and then runs into a very long, light spring with
force constant 2.10 N/m. The coefficients of kinetic and static friction between the stone
and the horizontal ground are 0.20 and 0.80, respectively.
Express your answer in meters per second to three significant figures.
Hνα ΑΣφ
v2 =
m/s
Submit
Request Answer
Part B
How far will the stone compress the spring?
Express your answer in meters to three significant figures.
nνα ΑΣφ
Figure
<) 1 of 1 >
m
A
Submit
Request Answer
Part C
20 m
В
Will the stone move again after it has been stopped by the spring?
K 15 m ·
O yes
Rough
О по
O o
Transcribed Image Text:A 13.0 kg stone slides down a snow-covered hill (Figure 1), leaving point A at a speed of 12.0 m/s. There is no friction on the hill between points A and B, but there is friction on the level ground at the bottom of the hill, between B and the wall. After entering the rough Part A What is the speed of the stone when it reaches point B? horizontal region, the stone travels 100 m and then runs into a very long, light spring with force constant 2.10 N/m. The coefficients of kinetic and static friction between the stone and the horizontal ground are 0.20 and 0.80, respectively. Express your answer in meters per second to three significant figures. Hνα ΑΣφ v2 = m/s Submit Request Answer Part B How far will the stone compress the spring? Express your answer in meters to three significant figures. nνα ΑΣφ Figure <) 1 of 1 > m A Submit Request Answer Part C 20 m В Will the stone move again after it has been stopped by the spring? K 15 m · O yes Rough О по O o
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