User:Allison K. Alix/Notebook/Thesis Research/2013/06/27: Difference between revisions

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The above calibration curve corresponds to several concentrations of an oligio-D samples (20pM-100pM). Although there seems to be a linear trend between the 80pM, 60pM, and 40pM, the 100pM and 20pM do not follow this same pattern. Because we are getting SOME indication that concentration and 1/N vary linearly to one another, we are going to prepare these samples once more and take FCS measurements.
The above calibration curve corresponds to several concentrations of an oligio-D samples (20pM-100pM). Although there seems to be a linear trend between the 80pM, 60pM, and 40pM, the 100pM and 20pM do not follow this same pattern. Because we are getting SOME indication that concentration and 1/N vary linearly to one another, we are going to prepare these samples once more and take FCS measurements.
[[Image:DNA_MB_calibration_curve_image_OWW.png]]
The above calibration curve corresponds to several concentrations of MB in solution with DNA. There seems to be a much less linear trend with these samples, especially seen in the 10000pM sample. Because of this, we have decided to prepare more samples with concentrations slightly closer to one another.


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Revision as of 08:44, 1 July 2013

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FCS data

The above fluorescent correlation curve corresponds to a 20uL sample of 10,000x diluted green fluorescent beads. This sample was used to obtain correct alignment of the laser into the sample, as the beads are easily identifiable on the camera. A smooth curve indicates many are present.


The above calibration curve corresponds to several concentrations of an oligio-D samples (20pM-100pM). Although there seems to be a linear trend between the 80pM, 60pM, and 40pM, the 100pM and 20pM do not follow this same pattern. Because we are getting SOME indication that concentration and 1/N vary linearly to one another, we are going to prepare these samples once more and take FCS measurements.



The above calibration curve corresponds to several concentrations of MB in solution with DNA. There seems to be a much less linear trend with these samples, especially seen in the 10000pM sample. Because of this, we have decided to prepare more samples with concentrations slightly closer to one another.