Team:ETH Zurich/modeling/diffmodel

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(Difference between revisions)
(Equations)
(Equations)
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where D<sub>m</sub> is a lumped coefficient for diffusion through the membrane
where D<sub>m</sub> is a lumped coefficient for diffusion through the membrane
and the diffusion rate of external AHL is
and the diffusion rate of external AHL is
-
$$Diff(AHL_{ext})=\frac{N \sigma \mathcal{A}}{V_{bead}} ([AHL_{ext}]-[AHL_{int}])= \frac{N V_{E.coli}}{V_{bead}}D_m([AHL_{ext}]-[AHL_{int}])=\frac{N V_{E.coli}}{V_{bead}}D_m([AHL_{ext}]-[AHL_{int}])$$
+
$$Diff(AHL_{ext})=\frac{N \sigma \mathcal{A}}{V_{bead}} ([AHL_{ext}]-[AHL_{int}])= \frac{N V_{E.coli}}{V_{bead}}D_m([AHL_{ext}]-[AHL_{int}])=\rho V_{E.coli}D_m([AHL_{ext}]-[AHL_{int}])$$
-
 
+
where &rho; is the cell density (number of cells per bead).
$$
$$
\begin{align*}
\begin{align*}

Revision as of 16:36, 15 October 2014

iGEM ETH Zurich 2014