Problem 19.23 9 of 16 Constants I Periodic Table In a hot day's race, a bicyclist consumes 7.2 L of water over the span of 3.5 hours. Part A Making the approximation that all of the cyclist's energy goes into evaporating this water as sweat, how much energy in kcal did the rider use during the ride? (Since the efficiency of the rider is only about 20%, most of the energy consumed does go to heat, so our approximation is not far off.) Assume that the heat of vaporization at room temperature is 585 kcal/kg. Express your answer using two significant figures. Ηα ΑΣφ kcal Submit Request Answer

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Problem 19.23
9 of 16
Constants I Periodic Table
In a hot day's race, a bicyclist consumes 7.2 L of water over
the span of 3.5 hours.
Part A
Making the approximation that all of the cyclist's energy goes into evaporating this water as sweat, how much energy in kcal did the rider use during
the ride? (Since the efficiency of the rider is only about 20%, most of the energy consumed does go to heat, so our approximation is not far off.)
Assume that the heat of vaporization at room temperature is 585 kcal/kg.
Express your answer using two significant figures.
Ηα ΑΣφ
kcal
Submit
Request Answer
Transcribed Image Text:Problem 19.23 9 of 16 Constants I Periodic Table In a hot day's race, a bicyclist consumes 7.2 L of water over the span of 3.5 hours. Part A Making the approximation that all of the cyclist's energy goes into evaporating this water as sweat, how much energy in kcal did the rider use during the ride? (Since the efficiency of the rider is only about 20%, most of the energy consumed does go to heat, so our approximation is not far off.) Assume that the heat of vaporization at room temperature is 585 kcal/kg. Express your answer using two significant figures. Ηα ΑΣφ kcal Submit Request Answer
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