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%\par The amplitude of oscillations was meas\qadd{ured by counting the notches on the wheel and the r}esult was displayed on the electronic control box. \par The control box contained inputs as shown in Figure 3. \begin{figure}[!bht] \centering \includegraphics[width = \textwidth]{box.png} \caption{The rear panel of the control box.(cited from lab 5 manual edited by Qin Tian, %Wang Yin, Mateusz Krzyzosiak)} \end{figure}} \subsection{Precisions \par The mea\baddsuring system mainly consist}s of the detector and its control box with the precision %\begin{table}[htbp] \centering \begin{tabular}%{cc} \toprule \multicolumn{1}{l}{Equipment} & \multicolumn{1}{l}{Resolution}\\ \midrule Pohl resonator (period) & 0.001s \\ Pohl resonator (phase lag) & 1$^\circ$ \\ Pohl resonator (amplitude) & 1$^\circ$ \\ \bottomrule \end{tabular} \caption{Me%a\cadd{surement device and pre}cisions.} \en}d{table}
JOJ Answer
%\par The amplitude of oscillations was meas\qadd{ured by counting the notches on the wheel and the r}esult was displayed on the electronic control box. \par The control box contained inputs as shown in Figure 3. \begin{figure}[!bht] \centering \includegraphics[width = \textwidth]{box.png} \caption{The rear panel of the control box.(cited from lab 5 manual edited by Qin Tian, %Wang Yin, Mateusz Krzyzosiak)} \end{figure}} \subsection{Precisions \par The mea\baddsuring system mainly consist}s of the detector and its control box with the precision %\begin{table}[htbp] \centering \begin{tabular}%{cc} \toprule \multicolumn{1}{l}{Equipment} & \multicolumn{1}{l}{Resolution}\\ \midrule Pohl resonator (period) & 0.001s \\ Pohl resonator (phase lag) & 1$^\circ$ \\ Pohl resonator (amplitude) & 1$^\circ$ \\ \bottomrule \end{tabular} \caption{Me%a\cadd{surement device and pre}cisions.} \en}d{table}