Team:ULB-Brussels/Modelling/Population-Dynamics
From 2014.igem.org
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The Logistic Equation was initially introduced during the beginning of the XIXth Century, by the belgian mathematician P.F. Verhulst. Now, this equation is mainly used in Population Dynamics Models, especially in Biological Sciences.</p> | The Logistic Equation was initially introduced during the beginning of the XIXth Century, by the belgian mathematician P.F. Verhulst. Now, this equation is mainly used in Population Dynamics Models, especially in Biological Sciences.</p> | ||
</section> | </section> | ||
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- | <tr><td><br/><br/></ | + | </tr> |
- | </ | + | <tr style="background-color:rgb(245,245,245);"><td width="50%"><section style="text-align: left"><a href="https://2014.igem.org/Team:ULB-Brussels/Modelling/Population-Dynamics"><b> Overview </b></a><br/><br/><br/></section> </td><td><section style="text-align: right"> |
- | + | <a href="https://2014.igem.org/Team:ULB-Brussels/Modelling/TA-System"><b> TA System > </b></a> | |
- | </ | + | <br/><br/><br/></section></td></tr> |
Revision as of 12:52, 31 August 2014
$~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~ \newcommand{\MyColi}{{\small Mighty\hspace{0.12cm}Coli}} \newcommand{\Stabi}{\small Stabi}$ $\newcommand{\EColi}{\small E.coli} \newcommand{\SCere}{\small S.cerevisae}\\[0cm] ~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~ \newcommand{\PI}{\small PI}$ $\newcommand{\Igo}{\Large\mathcal{I}} \newcommand{\Tgo}{\Large\mathcal{T}} \newcommand{\Ogo}{\Large\mathcal{O}} ~$
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