# Team:Paris/Modeling/f0

### From 2008.igem.org

(Difference between revisions)

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|GFP concentration at steady-state | |GFP concentration at steady-state | ||

|nM | |nM | ||

+ | | | ||

| | | | ||

|- | |- | ||

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|value of the observed fluorescence | |value of the observed fluorescence | ||

|au | |au | ||

+ | | | ||

|mean value of ~20 measures | |mean value of ~20 measures | ||

|- | |- | ||

Line 40: | Line 42: | ||

|nM.au<sup>-1</sup> | |nM.au<sup>-1</sup> | ||

|(1/79.429) | |(1/79.429) | ||

+ | | | ||

|} | |} | ||

</center> | </center> | ||

That will directly give us ƒ0, which corresponds to β<sub>72</sub> in the [[Team:Paris/Modeling/Synchronisation|equations]], if the ''pConstitutive'' is J23101. | That will directly give us ƒ0, which corresponds to β<sub>72</sub> in the [[Team:Paris/Modeling/Synchronisation|equations]], if the ''pConstitutive'' is J23101. |

## Revision as of 08:39, 29 October 2008

Method & Algorithm : ƒ0
exponential phase of growth, at the steady state, we have
That will directly give us ƒ0, which corresponds to β |