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But before the experiment could be undertaken, we needed to create calibrate our equipment by performing standard reference measurements, enabling the conversion of our data to absolute values. Firstly, we measured a solution of half LUDOX-S40, half water; fluorescein was then serially diluted by half 10 times and measured to give a standard curve. | But before the experiment could be undertaken, we needed to create calibrate our equipment by performing standard reference measurements, enabling the conversion of our data to absolute values. Firstly, we measured a solution of half LUDOX-S40, half water; fluorescein was then serially diluted by half 10 times and measured to give a standard curve. | ||
After 18 hours of growth, their optical density was measured and a new batch of LB/Chloramphenicol was inoculated to produce an OD of 0.02. These were then grown at 37°C, OD600nm and fluorescence were measured at 0, 2, 4, and 6 hours. | After 18 hours of growth, their optical density was measured and a new batch of LB/Chloramphenicol was inoculated to produce an OD of 0.02. These were then grown at 37°C, OD600nm and fluorescence were measured at 0, 2, 4, and 6 hours. | ||
− | For a full description of the methods, please visit the <a href="https://2017.igem.org/Competition/InterLab_Study">interlab official study page</a | + | For a full description of the methods, please visit the <a href="https://2017.igem.org/Competition/InterLab_Study">interlab official study page</a></p> |
<h1>Results</h1> | <h1>Results</h1> | ||
</center> | </center> |
Revision as of 20:49, 25 October 2017
INTERLAB STUDY:
Introduction
Introduction
Methods
Results
LUDOX-S40 and Fluoroscein Reference Measurements
OD600nm and Fluorescence Results
µM Fluorescein/OD600 and Ln µM FITC/OD600 Results