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The following is a review of error propagation needed to compute the errors on the normalization integrals and the intensity sum that is based on them.  Consider the estimator for the intensity for a given PWA solution, based on a sum over a Monte Carlo sample with N<sub>gen</sub> phase space events generated and N reconstructed and passing all cuts.  <math>
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The following is a review of error propagation needed to compute the errors on the normalization integrals and the intensity sum that is based on them.  Consider the estimator for the intensity for a given PWA solution, based on a sum over a Monte Carlo sample with N<sub>gen</sub> phase space events generated and N reconstructed and passing all cuts.   
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<math>
 
I=\frac{1}{N_{gen}}\sum_i^N{
 
I=\frac{1}{N_{gen}}\sum_i^N{
 
   \sum_{\gamma,\delta}{\rho_{\gamma\delta}
 
   \sum_{\gamma,\delta}{\rho_{\gamma\delta}
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