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|
\end{figure} |
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|
|
119 |
|
|
120 |
+ |
\begin{table}[hbt] |
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+ |
\begin{center} |
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+ |
\label{tab:victory_control} |
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+ |
\caption{Results of the dilepton $p_{T}$ template method in the control region |
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$125 < \mathrm{sumJetPt} < 300$~GeV. The predicted and observed yields for |
125 |
+ |
the region $\mathrm{tcmet}/\sqrt{\mathrm{sumJetPt}}>$~8.5 are shown for data |
126 |
+ |
and MC. The error on the prediction for data is statistical only, assuming |
127 |
+ |
Gaussian errors.} |
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+ |
\begin{tabular}{l|c|c|c} |
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+ |
\hline |
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& Predicted & Observed & Obs/Pred \\ |
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+ |
\hline |
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total SM MC & 7.10 & 8.61 & 1.21 \\ |
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data & 10.38 $\pm$ 4.24 & 11 & 1.06 \\ |
134 |
+ |
\hline |
135 |
+ |
\end{tabular} |
136 |
+ |
\end{center} |
137 |
+ |
\end{table} |
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+ |
|
139 |
+ |
\begin{table}[hbt] |
140 |
+ |
\begin{center} |
141 |
+ |
\label{tab:victory_control} |
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+ |
\caption{Results of the dilepton $p_{T}$ template method in the signal region |
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+ |
$125 < \mathrm{sumJetPt} < 300$~GeV. The predicted and observed yields for |
144 |
+ |
the region $\mathrm{tcmet}/\sqrt{\mathrm{sumJetPt}}>$~8.5 are shown for data |
145 |
+ |
and MC. The error on the prediction for data is statistical only, assuming |
146 |
+ |
Gaussian errors.} |
147 |
+ |
\begin{tabular}{l|c|c|c} |
148 |
+ |
\hline |
149 |
+ |
& Predicted & Observed & Obs/Pred \\ |
150 |
+ |
\hline |
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+ |
total SM MC & 0.96 & 1.41 & 1.46 \\ |
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+ |
data & 3.07 $\pm$ 2.17 & 1 & 0.33 \\ |
153 |
+ |
\hline |
154 |
+ |
\end{tabular} |
155 |
+ |
\end{center} |
156 |
+ |
\end{table} |
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+ |
|
158 |
+ |
|
159 |
|
\subsection{Summary of results} |
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To summarize: we see no evidence for an anomalous |
161 |
|
rate of opposite sign isolated dilepton events |