Difference between revisions of "Plastic Scintillator Calculation"
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Density of polyvinyl toluene (a common scintillator material) <math> = \frac{1.02grams}{cm^3}</math> | Density of polyvinyl toluene (a common scintillator material) <math> = \frac{1.02grams}{cm^3}</math> | ||
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+ | So entering all the numbers into the 4 initial equations gives the following answers: | ||
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+ | Molecules per <math> cm^3 = \frac{1.02g PVT}{cm^3} * \frac{1 mol}{14 g} * \frac{6.022*10^{23}molecules}{mol} = \frac{4.387*10^{22}molecules PVT}{cm^3} </math> | ||
[http://wiki.iac.isu.edu/index.php/PhotoFission_with_Polarized_Photons_from_HRRL Go Back] | [http://wiki.iac.isu.edu/index.php/PhotoFission_with_Polarized_Photons_from_HRRL Go Back] |
Revision as of 00:11, 5 February 2009
Below is the calculations done to determine the probability of pair production depending on thickness of the scintillator.
Molecules per
(NOTE: is just the density of the scintillator material and N[A] is Avagodro's number)Molecules per
Weighted cross-section
Probability of interaction (%)
All cross sections listed here are pair production cross-sections
For carbon
orFor carbon
orFor hydrogen
orFor hydrogen
orAvagodro's number
Density of polyvinyl toluene (a common scintillator material)
So entering all the numbers into the 4 initial equations gives the following answers:
Molecules per