Water has a density of 0.96 g mL- at its boiling point of 100 °C under standard atmo- spheric pressure. The density of water vapor is about 1600 times less than the density of water under the same conditions. If a 1.00 L beaker of water was converted into water vapor at 100 °C under standard atmospheric pressure, what would the volume (in L) of the water vapor be?

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Chapter5: Gases
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Problem 80E: Given that a sample of air is made up of nitrogen, oxygen, and argon in the mole fractions 0.78 N2,...
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. Water has a density of 0.96 g mL- at its boiling point of 100 °C under standard atmo-
spheric pressure. The density of water vapor is about 1600 times less than the density of
water under the same conditions. If a 1.00 L beaker of water was converted into water vapor
at 100 °C under standard atmospheric pressure, what would the volume (in L) of the water vapor be?
Transcribed Image Text:. Water has a density of 0.96 g mL- at its boiling point of 100 °C under standard atmo- spheric pressure. The density of water vapor is about 1600 times less than the density of water under the same conditions. If a 1.00 L beaker of water was converted into water vapor at 100 °C under standard atmospheric pressure, what would the volume (in L) of the water vapor be?
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