A tall cylindrical glass 2.2 inches in diameter and 7.5 inches high is filled with ethanol, 2.1 inches high. On a day when the ambient temperature is 15.5°C and normal atmospheric pressure, determine the ethanol vapor flux if the air inside the glass is stagnant. We can assume its concentration is zero at the mouth of the glass and the liquid level inside remains constant. O 25.9 g/m² -h O 63.5 g/m² -h O 29.9 g/m² -h

Introduction to Chemical Engineering Thermodynamics
8th Edition
ISBN:9781259696527
Author:J.M. Smith Termodinamica en ingenieria quimica, Hendrick C Van Ness, Michael Abbott, Mark Swihart
Publisher:J.M. Smith Termodinamica en ingenieria quimica, Hendrick C Van Ness, Michael Abbott, Mark Swihart
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A tall cylindrical glass 2.2 inches in diameter and 7.5 inches high is filled with ethanol, 2.1 inches high. On a day
when the ambient temperature is 15.5°C and normal atmospheric pressure, determine the ethanol vapor flux if the
air inside the glass is stagnant. We can assume its concentration is zero at the mouth of the glass and the liquid
level inside remains constant.
O 25.9 g/m² -h
O 63.5 g/m² -h
O 29.9 g/m² -h
43.4 g/m² -h
O 23.7 g/m² -h
Transcribed Image Text:A tall cylindrical glass 2.2 inches in diameter and 7.5 inches high is filled with ethanol, 2.1 inches high. On a day when the ambient temperature is 15.5°C and normal atmospheric pressure, determine the ethanol vapor flux if the air inside the glass is stagnant. We can assume its concentration is zero at the mouth of the glass and the liquid level inside remains constant. O 25.9 g/m² -h O 63.5 g/m² -h O 29.9 g/m² -h 43.4 g/m² -h O 23.7 g/m² -h
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