Team:Grenoble-EMSE-LSU/Documentation/Notebook/July

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                                           <h3>Wednesday</h3>
                                           <h3>Wednesday</h3>
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    <p></p>
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    <p>- Reduce the size of the black flacon to get more power and place the photodiode where the image of the filter is created by the lens because it is where there is the most of light.</br>
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<table align="center" style="border-collapse:collapse;font-size: 14px;">
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  <tr style="border:1px solid black;">
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      <th>Sample</th>
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      <th>Frequency</th>
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      <th>Irradiance</th>
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  </tr>
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  <tr style="border:1px solid black;">
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      <td>Empty tube</td>
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      <td>30 +/- 0.2Hz </td>
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      <td>60 +/- 0.4nW/cm²</td>
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  </tr>
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  <tr style="border:1px solid black;">
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      <td>Tube with ON cells without fluorescence protein</td>
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      <td>30.9 +/- 0.2Hz</td>
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      <td>61.8 +/- 0.4nW/cm²</td>
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  </tr>
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  <tr style="border:1px solid black;">
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      <td>Tube with ON cells with fluorescence protein</td>
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      <td>36.7 +/- 0.2Hz</td>
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      <td>73.4 +/- 0.4nW/cm²</td>
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  </tr>
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</table></br>
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The photodiode detect more fluorescence and the dynamic is doubled with this setup.
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Next step: Measure with a different level of expression of fluorescence proteins</p>
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Revision as of 13:17, 24 September 2013

Grenoble-EMSE-LSU, iGEM


Grenoble-EMSE-LSU, iGEM

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