Two sulfuric acid solutions in water containing 20 wt % H2SO4 and 80 wt % are mixed. The mixed solution is 5.313 molar solution (5.313 mol H2SO4/L). The S.G. of the 20 wt % H2SO4 solution is 1.1398 and that of the 80 wt % H2SO4 solution is 1.7272. The S.G. of the mixed 5.313 molar solution is 1.3028. How many liters of 80 wt % H2SO4 solution will be required to produce 1450 kg of 5.313 molar H2SO4 solution.

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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Two sulfuric acid solutions in water containing 20
wt % H2SO4 and 80 wt % are mixed. The mixed
solution is 5.313 molar solution (5.313 mol
H2SO4/L). The S.G. of the 20 wt % H2SO4
solution is 1.1398 and that of the 80 wt % H2SO4
solution is 1.7272. The S.G. of the mixed 5.313
molar solution is 1.3028.
i. How many liters of 80 wt % H2SO4 solution will
be required to produce 1450 kg of 5.313 molar
H2SO4 solution.
Transcribed Image Text:Two sulfuric acid solutions in water containing 20 wt % H2SO4 and 80 wt % are mixed. The mixed solution is 5.313 molar solution (5.313 mol H2SO4/L). The S.G. of the 20 wt % H2SO4 solution is 1.1398 and that of the 80 wt % H2SO4 solution is 1.7272. The S.G. of the mixed 5.313 molar solution is 1.3028. i. How many liters of 80 wt % H2SO4 solution will be required to produce 1450 kg of 5.313 molar H2SO4 solution.
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