A tank contains 80 kg of salt and 1000 L of water. A solution of a concentration 0.04 kg of salt per liter enters a tank at the rate 10 L/min. The solution is mixed and drains from the tank at the same rate. (a) What is the concentration of our solution in the tank initially? concentration D (kg/L) (b) Find the amount of salt in the tank after 2.5 hours. amount = (kg) (c) Find the concentration of salt in the solution in the tank as time approaches infinity. concentration = (kg/L) Question Help: Video Message instructor Add Work

Principles of Modern Chemistry
8th Edition
ISBN:9781305079113
Author:David W. Oxtoby, H. Pat Gillis, Laurie J. Butler
Publisher:David W. Oxtoby, H. Pat Gillis, Laurie J. Butler
Chapter17: Electrochemistry
Section: Chapter Questions
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9)
A tank contains 80 kg of salt and 1000 L of water. A solution of a concentration 0.04 kg of salt per
liter enters a tank at the rate 10 L/min. The solution is mixed and drains from the tank at the same
rate.
(a) What is the concentration of our solution in the tank initially?
concentration =
(kg/L)
(b) Find the amount of salt in the tank after 2.5 hours.
amount =
(kg)
(c) Find the concentration of salt in the solution in the tank as time approaches infinity.
concentration =
(kg/L)
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Transcribed Image Text:A tank contains 80 kg of salt and 1000 L of water. A solution of a concentration 0.04 kg of salt per liter enters a tank at the rate 10 L/min. The solution is mixed and drains from the tank at the same rate. (a) What is the concentration of our solution in the tank initially? concentration = (kg/L) (b) Find the amount of salt in the tank after 2.5 hours. amount = (kg) (c) Find the concentration of salt in the solution in the tank as time approaches infinity. concentration = (kg/L) Question Help: Video Message instructor Add Work Submit Question Jump to Answer
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