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<img src="https://static.igem.org/mediawiki/2018/b/b0/T--Vilnius-Lithuania--3_InterLab.png"> | <img src="https://static.igem.org/mediawiki/2018/b/b0/T--Vilnius-Lithuania--3_InterLab.png"> | ||
− | <strong>Fig. 3</strong> Standard curve of fluorescein generated by measuring the fluorescence of serial dilution stock (µM). Fluorescence is plotted against the fluorescein concentration.</p> | + | <p><strong>Fig. 3</strong> Standard curve of fluorescein generated by measuring the fluorescence of serial dilution stock (µM). Fluorescence is plotted against the fluorescein concentration.</p> |
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<tr> | <tr> | ||
<td>1.1 Positive Control</td> | <td>1.1 Positive Control</td> | ||
− | <td>0.132667</td> | + | <td>0.132667 * 10^8</td> |
</tr> <tr> | </tr> <tr> | ||
<td>1.2 Positive Control</td> | <td>1.2 Positive Control</td> | ||
− | <td>0.086667</td> | + | <td>0.086667 * 10^8</td> |
</tr> <tr> | </tr> <tr> | ||
<td>1.3 Positive Control</td> | <td>1.3 Positive Control</td> | ||
− | <td>0.271333</td> | + | <td>0.271333 * 10^8</td> |
</tr> <tr> | </tr> <tr> | ||
<td>2.1 Positive Control</td> | <td>2.1 Positive Control</td> | ||
− | <td>0.448667</td> | + | <td>0.448667 * 10^8</td> |
</tr> <tr> | </tr> <tr> | ||
<td>2.2 Positive Control</td> | <td>2.2 Positive Control</td> | ||
− | <td>0.394667</td> | + | <td>0.394667 * 10^8</td> |
</tr> <tr> | </tr> <tr> | ||
<td>2.3 Positive Control</td> | <td>2.3 Positive Control</td> | ||
− | <td>0.659667</td> | + | <td>0.659667 * 10^8</td> |
</tr> <tr> | </tr> <tr> | ||
<td>3.1 Negative Control</td> | <td>3.1 Negative Control</td> | ||
− | <td>0.236</td> | + | <td>0.236 * 10^8</td> |
</tr> <tr> | </tr> <tr> | ||
<td>3.2 Negative Control</td> | <td>3.2 Negative Control</td> | ||
− | <td>0.722</td> | + | <td>0.722 * 10^8</td> |
</tr> <tr> | </tr> <tr> | ||
<td>3.3 Negative Contro</td> | <td>3.3 Negative Contro</td> | ||
− | <td>0.346667</td> | + | <td>0.346667 * 10^8</td> |
</tr> <tr> | </tr> <tr> | ||
<td>4.1 Negative control</td> | <td>4.1 Negative control</td> | ||
− | <td>0.494</td> | + | <td>0.494 * 10^8</td> |
</tr> <tr> | </tr> <tr> | ||
<td>4.2 Negative control</td> | <td>4.2 Negative control</td> | ||
− | <td>0.279</td> | + | <td>0.279 * 10^8</td> |
</tr> <tr> | </tr> <tr> | ||
<td>4.3 Negative control</td> | <td>4.3 Negative control</td> | ||
− | <td>0.395</td> | + | <td>0.395 * 10^8</td> |
</tr> | </tr> | ||
</tbody> | </tbody> | ||
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+ | </div> | ||
+ | </div> | ||
<div class="carrot-back"> | <div class="carrot-back"> | ||
<a class="carrot-anchor-back" href=""> | <a class="carrot-anchor-back" href=""> | ||
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<div class="invert-box"> | <div class="invert-box"> |
Latest revision as of 21:42, 4 November 2018
InterLab
Studying Fluorescence
The goal of this year’s InterLab Study was to identify and minimize the sources of systematic variability in fluorescence measurements by normalizing to absolute cell count or colony-forming units (CFUs) instead of optical density (OD).
Participating in the fifth iGEM InterLab Study was a great opportunity to start this year’s competition as well as acquire some valuable knowledge which we implemented into practice during the project.