Team:ETH Zurich/Modeling

From 2013.igem.org

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The change of the species concentrations in time is given by non-linear ordinary differential equations (ODEs), most of which follow Hill kinetics. The parameters we used in the model are derived from literature.
The change of the species concentrations in time is given by non-linear ordinary differential equations (ODEs), most of which follow Hill kinetics. The parameters we used in the model are derived from literature.
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<div class="box">
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=''Mine Cells''=
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==''MineCells''==
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The Mine Cells produce the signalling molecule, by constitutive expression of ''luxI'' gene.
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{| "width=100%" style="text-align:center;" style="align:right"|
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</p>  
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|<p align="justify">E.coli alkdjfaklj adlfkjajdf aldfkjal</p>  
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</div>
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= ''Mine Cells'' =
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sdf
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= ''Biosensors'' =
= ''Biosensors'' =
hg
hg

Revision as of 12:01, 17 August 2013

Header2.png
80px-Eth igem logo.png


The change of the species concentrations in time is given by non-linear ordinary differential equations (ODEs), most of which follow Hill kinetics. The parameters we used in the model are derived from literature.

Mine Cells

The Mine Cells produce the signalling molecule, by constitutive expression of luxI gene. </p>

Biosensors

hg