When jogging at 13 km/h on a level surface, a 70-kg man uses energy at a rate of approximately 850 W. Using the facts that the “human engine" is approximately 25% efficient, determine the rate at which this man uses energy when jogging up a 5.0° slope at this same speed. Assume that the frictional retarding force is the same in both cases.
When jogging at 13 km/h on a level surface, a 70-kg man uses energy at a rate of approximately 850 W. Using the facts that the “human engine" is approximately 25% efficient, determine the rate at which this man uses energy when jogging up a 5.0° slope at this same speed. Assume that the frictional retarding force is the same in both cases.
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![When jogging at 13 km/h on a level surface, a 70-kg man uses energy at a rate of approximately 850 W. Using
the facts that the "human engine" is approximately 25% efficient, determine the rate at which this man uses
energy when jogging up a 5.0° slope at this same speed. Assume that the frictional retarding force is the
same in both cases.](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F7af4aba8-0edd-487b-bd65-0b50a189518c%2F6cab8618-4112-439c-b1f1-a4f8ed87d100%2Fd0rtwxx_processed.png&w=3840&q=75)
Transcribed Image Text:When jogging at 13 km/h on a level surface, a 70-kg man uses energy at a rate of approximately 850 W. Using
the facts that the "human engine" is approximately 25% efficient, determine the rate at which this man uses
energy when jogging up a 5.0° slope at this same speed. Assume that the frictional retarding force is the
same in both cases.
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