\begin{document}$H_1^T$\end{document}, in p+p and Pb+Pb collisions. We found that for events with jet number \begin{document}$n_\text{jet} = 2$\end{document}, the \begin{document}$H_1^T$\end{document} distribution in Pb+Pb collisions is suppressed for small \begin{document}$H_1^T$\end{document}regions while it is enhanced for large \begin{document}$H_1^T$\end{document} regions as compared to p+p collisions. For events with \begin{document}$n_\text{jet}>2$\end{document}, the jet-number reduction effect due to jet quenching in QGP decreases the \begin{document}$H_1^T$\end{document} distribution for large \begin{document}$H_1^T$\end{document}regions in Pb+Pb collisions relative to p+p collisions. The medium modifications of the Fox-Wolfram moment \begin{document}$H_1^T$\end{document} for events with \begin{document}$n_\text{jet}\ge 2$\end{document} are also presented. They resemble those of events with \begin{document}$n_\text{jet} = 2$\end{document}. This is demonstrated by the relative contribution fractions of events with different final-state jet numbers with respect to \begin{document}$H_1^T$\end{document}."> Fox-Wolfram moment of jet production in relativistic heavy-ion collisions -
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