Team:ETH Zurich/modeling/diffmodel

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== Equations==
== Equations==
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$$\begin{align*}
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$$
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\begin{align*}
\frac{d[LuxAHLext]}{dt} &= N \ V_{E. coli} \ Dm (LuxAHL_{int}-LuxAHL_{ext}) -d_{LuxAHLext}[LuxAHL_{ext}]\\
\frac{d[LuxAHLext]}{dt} &= N \ V_{E. coli} \ Dm (LuxAHL_{int}-LuxAHL_{ext}) -d_{LuxAHLext}[LuxAHL_{ext}]\\
frac{d[LuxAHLint]}{dt} &= Dm (LuxAHL_{ext}-LuxAHL_{int}) + k_{-RLux}[R_{Lux}]-k_{RLux}[LuxAHL_{int}][LuxR]-d_{LuxAHLint}[LuxAHL_{int}]\\
frac{d[LuxAHLint]}{dt} &= Dm (LuxAHL_{ext}-LuxAHL_{int}) + k_{-RLux}[R_{Lux}]-k_{RLux}[LuxAHL_{int}][LuxR]-d_{LuxAHLint}[LuxAHL_{int}]\\
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$$\frac{d[mRNA_{GFP}]}{dt} = L_{P_{Lux}} + \frac{k_{mRNA_{GFP}}[RLux]^2}{K_{mLux}^2 + [RLux]^2}- d_{mRNA_{GFP}} [mRNA_{GFP}]\\$$
$$\frac{d[mRNA_{GFP}]}{dt} = L_{P_{Lux}} + \frac{k_{mRNA_{GFP}}[RLux]^2}{K_{mLux}^2 + [RLux]^2}- d_{mRNA_{GFP}} [mRNA_{GFP}]\\$$
\frac{d[GFP]}{dt} &=  k_{GFP} [mRNA_{GFP}] - d_{GFP}[GFP]\\
\frac{d[GFP]}{dt} &=  k_{GFP} [mRNA_{GFP}] - d_{GFP}[GFP]\\
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\end{align*}$$
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\end{align*}
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$$
== Results ==
== Results ==
<html></article></html>
<html></article></html>
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{{:Team:ETH Zurich/tpl/foot}}

Revision as of 09:09, 15 October 2014

iGEM ETH Zurich 2014