User:Javier Vinals Camallonga/Notebook/Javier Vinals notebook/2013/10/08: Difference between revisions
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[[Image:Adenosine to Inosine Javier Vinals.png|500px]] | [[Image:Adenosine to Inosine Javier Vinals.png|500px]] | ||
"Table 1. System of equation to calculate concentration" | "Table 1. System of equation to calculate concentration of Adenosine" | ||
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{| {{table}} | {| {{table}} | ||
| align="center" style="background:#f0f0f0;"|''' ''' | | align="center" style="background:#f0f0f0;"|'''Adenosine''' | ||
| align="center" style="background:#f0f0f0;"|'''Absorbance at time 0''' | | align="center" style="background:#f0f0f0;"|'''Absorbance at time 0''' | ||
| align="center" style="background:#f0f0f0;"|'''molar absorptivity''' | | align="center" style="background:#f0f0f0;"|'''molar absorptivity''' |
Revision as of 11:12, 9 October 2013
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Entry title
ObjectiveTo observe and measure ADA turnover kinetics in the absence of an inhibitor. This work will be the basis of our comparison to ADA-AuNP turnover studies. Description
Data
After we collected the data, we worked up the data and we found the concentration of inosine and adenosine, based on beer's law, and the peaks 260 and 250, from which we know epsilon, b and the absorbance. After putting the files and working it up, we obtained the graph of Adenosine to Inosine. "Figure 1. Adenosine to Inosine" "Table 1. System of equation to calculate concentration of Adenosine"
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