Question: 1. Suppose that the elevator is broken in the building n which you work and you have to climb 9 stories. -a height of 45m above ground level. How many extra calories will this external work cost you if your mass is 70 kg and your body work at 15% efficiency? 2. A 70 kg hiker climbed a mountain 1000 m high. He reached the peak in 3 hr. A. Calculate the external work done by the climber. B. Assuming the work was done at a steady rate during the 3 hr period. Calculate the power generated during the climb. C. Assuming the average O, consumption during he climb was 2 liters/min (corresponding to 9.6 kcal/min), find the efficiency of the hiker's body. D. How much energy appeared as heat in the body?

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Question:
1. Suppose that the elevator is broken in the building n which you work and you
have to climb 9 stories.
-a height of 45m above ground level.
How many extra calories will this external work cost you if your mass is 70 kg and
your body work at 15% efficiency?
2. A 70 kg hiker climbed a mountain 1000 m high. He reached the peak in 3 hr.
A. Calculate the external work done by the climber.
B. Assuming the work was done at a steady rate during the 3 hr period.
Calculate the power generated durir
the climb.
C. Assuming the average O, consumption during he climb was 2 liters/min
(corresponding to 9.6 kcal/min), find the efficiency of the hiker's body.
D. How much energy appeared as heat in the body?
Transcribed Image Text:Question: 1. Suppose that the elevator is broken in the building n which you work and you have to climb 9 stories. -a height of 45m above ground level. How many extra calories will this external work cost you if your mass is 70 kg and your body work at 15% efficiency? 2. A 70 kg hiker climbed a mountain 1000 m high. He reached the peak in 3 hr. A. Calculate the external work done by the climber. B. Assuming the work was done at a steady rate during the 3 hr period. Calculate the power generated durir the climb. C. Assuming the average O, consumption during he climb was 2 liters/min (corresponding to 9.6 kcal/min), find the efficiency of the hiker's body. D. How much energy appeared as heat in the body?
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