How much power is needed to lift a 75-kg student vertically upward at a constant speed of 0.33 m/s? 2. An engineer is asked to design a playground slide such that the speed a child reaches at the bottom does not exceed 6.0 m/s. Determine the maximum height that the slide can be. 3. Use the work-energy theorem to find the force required to accelerate an electron (m = 9.11 × 10–31 kg) moving along the x axis from 4.00 × 106 m/s to 1.60 × 107 m/s in a distance of 0.0125 m.

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Chapter3: Energy And Conservation Laws
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1. How much power is needed to lift a 75-kg student vertically upward at a constant speed of 0.33 m/s?

2. An engineer is asked to design a playground slide such that the speed a child reaches at the bottom does not exceed 6.0 m/s. Determine the maximum height that the slide can be.

3. Use the work-energy theorem to find the force required to accelerate an electron (m = 9.11 × 10–31 kg) moving along the x axis from 4.00 × 106 m/s to 1.60 × 107 m/s in a distance of 0.0125 m.

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