volume change of mixing (cm³/mol) for the system ethanol (1)/methyl butyl ether (2) at 298.15 K is given by the equation: AV = x,X2[-1.026+0.220 (x1 – x2)] Given that Vi = 58.63 and V2 = 118.46 cm³/mol, what volume of mixture is formed when 750 cm³ of pure species 1 is mixed with 1500 cm³ of species 2 at 298.15 K? What would be the volume if an ideal solution were formed?

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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The volume change of mixing (cm³/mol) for the system ethanol (1)/methyl butyl
ether (2) at 298.15 K is given by the equation:
AV = x1x2[-1.026+ 0.220 (x1 – x2)]
Given that Vị = 58.63 and V2 = 118.46 cm³/mol, what volume of mixture is
formed when 750 cm³ of pure species 1 is mixed with 1500 cm³ of species 2 at
298.15 K? What would be the volume if an ideal solution were formed?
Transcribed Image Text:The volume change of mixing (cm³/mol) for the system ethanol (1)/methyl butyl ether (2) at 298.15 K is given by the equation: AV = x1x2[-1.026+ 0.220 (x1 – x2)] Given that Vị = 58.63 and V2 = 118.46 cm³/mol, what volume of mixture is formed when 750 cm³ of pure species 1 is mixed with 1500 cm³ of species 2 at 298.15 K? What would be the volume if an ideal solution were formed?
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