The measured volumetric flow rate of ethane at 5.00 atm absolute and 35.0°C is 2.00 x 10° L/h. Using an estimated value of the second virial coefficient in the truncated virial equation (Equation 5.3-2), calculate , estimate the compressibility factor z, and determine the mass flow rate of ethane in kg/h. V: i 2.12 L/mol z: i 0.4192 m: i 9095.6 kg/h

Introduction to Chemical Engineering Thermodynamics
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ISBN:9781259696527
Author:J.M. Smith Termodinamica en ingenieria quimica, Hendrick C Van Ness, Michael Abbott, Mark Swihart
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The measured volumetric flow rate of ethane at 5.00 atm absolute and 35.0°C is 2.00 x 10° L/h. Using an estimated value of the
second virial coefficient in the truncated virial equation (Equation 5.3-2), calculate V, estimate the compressibility factor z, and
determine the mass flow rate of ethane in kg/h.
V:
i
2.12
L/mol
z:
i
0.4192
m:
i
9095.6
kg/h
Transcribed Image Text:The measured volumetric flow rate of ethane at 5.00 atm absolute and 35.0°C is 2.00 x 10° L/h. Using an estimated value of the second virial coefficient in the truncated virial equation (Equation 5.3-2), calculate V, estimate the compressibility factor z, and determine the mass flow rate of ethane in kg/h. V: i 2.12 L/mol z: i 0.4192 m: i 9095.6 kg/h
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