INFLOWS:
ΔH2O ¼ K * H * O {Increase in H2O concentration; simple second-order reaction
overall and first order reaction with respect to each of the elements; measured in
Moles per Cubic Meter per Second}
O(t) ¼ O(t À dt) + (À ΔO) * dt
INIT O ¼ 100 {Moles per Cubic Meter}
OUTFLOWS:
ΔO ¼ O_PER_H2O * ΔH2O {Decrease in 0 concentration as a result of H2O
formation; measured in Moles per Cubic Meter per Second}
H_PER_H2O ¼ 2 {Moles H required per Mole H2O formed - from stoichiometry
of reaction}
K ¼ .005 {1/Second-concentration.}
O_PER_H2O ¼ 1 {Moles O required per Mole H2O formed - from stoichiometry
of reaction}
68
6 Law of Mass Action
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