The following data are available for liquid ethanol at 20 C: Molecular weight = 46.07, Density at 1 bar = 0.7893 g/cm³, Volume expansivity ß= 1.12 x 103³ K¹, Isothermal compressibility K=1.0 x 10 bar. 10 kg of liquid ethanol initially at 20°C and 1 bar are compressed isothermally until the final pressure is 280 bar. Calculate the volume change of ethanol for the process.

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
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The following data are available for liquid ethanol at 20 C:
Molecular weight = 46.07, Density at 1 bar = 0.7893 g/cm³,
Volume expansivity ß= 1.12 x 103 K-¹, Isothermal compressibility K=1.0 x 10 bar.
10 kg of liquid ethanol initially at 20°C and 1 bar are compressed isothermally until the
final pressure is 280 bar. Calculate the volume change of ethanol for the process.
Transcribed Image Text:The following data are available for liquid ethanol at 20 C: Molecular weight = 46.07, Density at 1 bar = 0.7893 g/cm³, Volume expansivity ß= 1.12 x 103 K-¹, Isothermal compressibility K=1.0 x 10 bar. 10 kg of liquid ethanol initially at 20°C and 1 bar are compressed isothermally until the final pressure is 280 bar. Calculate the volume change of ethanol for the process.
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