At 25°C, an aqueous solution containing 35.0 wt% H2SO4 has a specific gravity of 1.2563. A quantity of the 35.0 % solution is needed that contains 245.5 kg of H2SO4.

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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Required volume L of the solution using the specific gravity is 558.33L. Please show your complete solution. When solving write the units. Please write clearly and readable. Thank you.
Estimate the percentage error that would have resulted if pure-component specific gravities of H2SO4 (1.8255 at 25°C) and water
had been used for the calculation instead of the given specific gravity of the mixture.
i
What is the specific gravity of a 35.0 wt% H2SO4 solution if there is no change in volume upon mixing?
Transcribed Image Text:Estimate the percentage error that would have resulted if pure-component specific gravities of H2SO4 (1.8255 at 25°C) and water had been used for the calculation instead of the given specific gravity of the mixture. i What is the specific gravity of a 35.0 wt% H2SO4 solution if there is no change in volume upon mixing?
At 25°C, an aqueous solution containing 35.0 wt% H2SO4 has a specific gravity of 1.2563.
A quantity of the 35.0 % solution is needed that contains 245.5 kg of H2SO4.
Transcribed Image Text:At 25°C, an aqueous solution containing 35.0 wt% H2SO4 has a specific gravity of 1.2563. A quantity of the 35.0 % solution is needed that contains 245.5 kg of H2SO4.
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