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I. A student lives in an apartment with a floor area of 6 0 m 2 and ceiling height of 1 . 8 m .
I. A student lives in an apartment with a floor area of and ceiling height of The apartment
has a fresh outdoor air exchange rate of The stove in the apartment heats by natural gas. The
student cooks a meal using two gas burners that each emit carbon monoxide CO at a rate of
The outdoor concentration can be assumed to be negligible The initial time indoor
concentration can be assumed to be except for problem Carbon monoxide can be considered
as an inert gas, ie it does not stick to or react with any surfaces or other gases in air.
Assume that the student cooks for a long enough period of time to achieve a steadystate CO
concentration in the apartment. What is that concentration in
Assume that the student cooks for only minutes and turns off both burners at that time. What is
the concentration in at the end of minutes?
Repeat problem for air exchange rates that vary from to and plot the concentration at
minutes in ppb versus air exchange rate.
Assume that for the conditions of problem the student waits minutes after turning the burners
off and then starts cooking again with two burners on How long will it take to reach a concentration
that is of steadystate under this condition?
Note that you can actually address this question with an eloquent mathematical derivation preferred
or simply by crunching the concentration profile in a spreadsheet.
What is the concentration at of steadystate?
Compare your result with the time that would be required to reach of steadystate had the initial
indoor concentration been
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