A person inhales air richer in Oz and exhales air richer in CO2 and water vapor. During each hour of sleep, a person exhales a total of 300. L of this CO2-enriched and H20-enriched air. (a) If the partial pressures of Co2 and H20 in exhaled air are each 30.0 torr at 25.1°C, calculate the masses of CO2 and of H20 exhaled in 1.00 hour of sleep. CO2 H20 (b) How many grams of body mass does the person lose in about 8 h sleep if all the CO2 and H20 exhaled come from the metabolism of glucose? (Note: 8 h has 1 significant figure, so round your answer to 1 sig. fig.) CeH1206(s) + 6 02(9) + 6 CO2(g) + 6 H20(g)
A person inhales air richer in Oz and exhales air richer in CO2 and water vapor. During each hour of sleep, a person exhales a total of 300. L of this CO2-enriched and H20-enriched air. (a) If the partial pressures of Co2 and H20 in exhaled air are each 30.0 torr at 25.1°C, calculate the masses of CO2 and of H20 exhaled in 1.00 hour of sleep. CO2 H20 (b) How many grams of body mass does the person lose in about 8 h sleep if all the CO2 and H20 exhaled come from the metabolism of glucose? (Note: 8 h has 1 significant figure, so round your answer to 1 sig. fig.) CeH1206(s) + 6 02(9) + 6 CO2(g) + 6 H20(g)
Chemistry
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ISBN:9781305957404
Author:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
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Chapter1: Chemical Foundations
Section: Chapter Questions
Problem 1RQ: Define and explain the differences between the following terms. a. law and theory b. theory and...
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A person inhales air richer in 02 and exhales air richer in CO2 and water vapor. During each hour of sleep, a person exhales a total of 300. L of this CO2-enriched and H20-enriched air.
(a) If the partial pressures of CO2 and H20 in exhaled air are each 30.0 torr at 25.1°C, calculate the masses of CO2 and of H20 exhaled in 1.00 hour of sleep.
CO2
4.0)
H20
4.0
(b) How many grams of body mass does the person lose in about 8 h sleep if all the Co, and H20 exhaled come from the metabolism of glucose? (Note: 8 h has 1 significant figure, so round your answer
to 1 sig. fig.)
4.0
C6H1206(s) + 6 02(g) → 6 CO2(g) + 6 H20(g)
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