Difference between revisions of "Team:SMS Shenzhen/InterLab"

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<h3>★  ALERT! </h3>
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<p>This page is used by the judges to evaluate your team for the <a href="https://2018.igem.org/Judging/Medals">medal criterion</a> or <a href="https://2018.igem.org/Judging/Awards"> award listed below</a>. </p>
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<p> Delete this box in order to be evaluated for this medal criterion and/or award. See more information at <a href="https://2018.igem.org/Judging/Pages_for_Awards"> Instructions for Pages for awards</a>.</p>
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        <h1>InterLab</h1>
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        <p style="font-size:18px">This year, team SMS_Shenzhen has successfully participated in the Interlab measurement. We were able to construct a calibration curve, which helps with converting absorbance of the cell to known concentration of silicon beads. We determined cell concentration by counting colony-form units. This way, we were able to contribute to the elimination of law variability.</p>
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<h1>InterLab</h1>
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<h3>Bronze Medal Criterion #4</h3>
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<p><b>Standard Tracks:</b> Participate in the Interlab Measurement Study and/or obtain new, high quality experimental characterization data for an existing BioBrick Part or Device and enter this information on that part's Main Page in the Registry. The part that you are characterizing must NOT be from a 2018 part number range.
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For teams participating in the <a href="https://2018.igem.org/Measurement/InterLab">InterLab study</a>, all work must be shown on this page.
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Latest revision as of 03:37, 18 October 2018

Title

Title

InterLab

This year, team SMS_Shenzhen has successfully participated in the Interlab measurement. We were able to construct a calibration curve, which helps with converting absorbance of the cell to known concentration of silicon beads. We determined cell concentration by counting colony-form units. This way, we were able to contribute to the elimination of law variability.