A large tank of unknown volume is initially filled with 6000g of a 10% by mass sodium sulfate solution. Into this tank a 50% sodium sulfate solution is added at a rate of 40g/min. At a single outlet from the tank flows a 20g/L solution at a rate of 0.01667 L/s. Using an integral approach determine the following (Note: You must complete the math clearly in order to receive credit): a) The total mass in the tank after 2 hours. b) The amount of sodium sulfate in the tank after 2 hours.

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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7)
A large tank of unknown volume is initially filled with 6000g of a 10% by mass sodium sulfate
solution. Into this tank a 50% sodium sulfate solution is added at a rate of 40g/min. At a single outlet from
the tank flows a 20g/L solution at a rate of 0.01667 L/s. Using an integral approach determine the following
(Note: You must complete the math clearly in order to receive credit):
a) The total mass in the tank after 2 hours.
b) The amount of sodium sulfate in the tank after 2 hours.
Transcribed Image Text:7) A large tank of unknown volume is initially filled with 6000g of a 10% by mass sodium sulfate solution. Into this tank a 50% sodium sulfate solution is added at a rate of 40g/min. At a single outlet from the tank flows a 20g/L solution at a rate of 0.01667 L/s. Using an integral approach determine the following (Note: You must complete the math clearly in order to receive credit): a) The total mass in the tank after 2 hours. b) The amount of sodium sulfate in the tank after 2 hours.
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