A child of mass m starts from rest from the top of the water slide. The water slide is 7.6 meters high from the bottom of the slide, which is at water level. Assuming that the slide's friction is negligible, what would be the child's speed at the bottom of the slide?

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Chapter8: Potential Energy And Conservation Of Energy
Section: Chapter Questions
Problem 38P: A 100 — kg man is skiing across level ground at a speed of 8.0 m/s when he comes to the small slope...
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A child of mass m starts from rest from the top of the water slide. The water slide is 7.6 meters high from the bottom of the slide, which is at water level. Assuming that the slide's friction is negligible, what would be the child's speed at the bottom of the slide? 

Note: it says we need to get the gravitational potential energy...

6. A child of mass m starts from rest from the top of a water slide. The water slide is
7.6 meters high from the bottom of the slide, which is at water level. Assuming
that the slide's friction is negligible, what would be the child's speed at the
bottom of the slide?
Transcribed Image Text:6. A child of mass m starts from rest from the top of a water slide. The water slide is 7.6 meters high from the bottom of the slide, which is at water level. Assuming that the slide's friction is negligible, what would be the child's speed at the bottom of the slide?
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