Difference between revisions of "170048 10% Se Soil Mixture Analysis"
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Line 48: | Line 48: | ||
||<math> S_{Expanded} - S_{Thin} </math>|| 21200 || 19000 || 17700 | ||<math> S_{Expanded} - S_{Thin} </math>|| 21200 || 19000 || 17700 | ||
|- | |- | ||
− | ||Integrated Background || <math> | + | ||Integrated Background || <math>10070 \pm 65.2 </math> || <math> 9172 \pm 62.4 </math> || <math> 7764 \pm 58.6 </math> |
|- | |- | ||
||Signal - Background || <math> 197130 \pm 21200.10 </math> || <math> 152228 \pm 19000.10</math> || <math> 107436 \pm 17700.10 </math> | ||Signal - Background || <math> 197130 \pm 21200.10 </math> || <math> 152228 \pm 19000.10</math> || <math> 107436 \pm 17700.10 </math> |
Revision as of 18:36, 15 March 2018
Sample 170048 was a 10% mixture of selenium and soil. The mass of the inner selenium is 0.5145g, while the mass of the outer selenium is 0.1245g. The method used was the thin window analysis method as explained here LB Thesis Thin Window Analysis. Below is a table of values to continue with the analysis of the selenium soil mixture:
Below is a table for the pure selenium sample outside of the aluminum cylinder: