\begin{table}%t2
\caption{\label{Tab:sum2}Temporal behavior of the X-ray afterglow light curves in the case of $1
\max\{\nu_{\rm c}^{\rm f},~\nu_{\rm m}^{\rm f}\}$ &
$t^2$ & $t^{0}$\\
$t\max\{\nu_{\rm c}^{\rm r},~\nu_{\rm m}^{\rm r}\}$ & $t^{-3(2-p)/8}$ & $t^{0}$ \\
$tt_{\rm p}$ &$\nu_{_{\rm X}}>\max\{\nu_{\rm c}^{\rm f},~\nu_{\rm m}^{\rm f}\}$ &
$t^{-(10+3p)/16}$ & ${t^{-(6+p)/8}}$ \\
$t>t_{\rm p}$ & $\nu_{\rm c}^{\rm f}<\nu_{_{\rm X}}<\nu_{\rm m}^{\rm f}$ & $t^{-(22-9p)/16}$ & ${t^{-(12-5p)/8}}$ \\
$t>t_{\rm p}$ & $\nu_{\rm m}^{\rm f}<\nu_{_{\rm X}}<\nu_{\rm c}^{\rm f}$ & ${t^{-(6+3p)/16}}$ & ${t^{-(8+p)/8}}$ \\[2pt]
\hline
Late FS emission (jet) & & & \\
$t>t_{\rm j}$ &$\nu_{_{\rm X}}>\max\{\nu_{\rm c}^{\rm f},~\nu_{\rm m}^{\rm f}\}$ &
$t^{-(p+6)/4}$ & $t^{-(p+6)/4}$\\
$t>t_{\rm j}$ & $\nu_{\rm c}^{\rm f}<\nu_{_{\rm X}}<\nu_{\rm m}^{\rm f}$ & ${t^{(3p-10)/4}}$ & ${t^{(3p-10)/4}}$ \\
$t>t_{\rm j}$ & $\nu_{\rm m}^{\rm f}<\nu_{_{\rm X}}<\nu_{\rm c}^{\rm f}$ & $t^{-(p+6)/4}$ & $t^{-(p+6)/4}$ \\[2pt]
\hline
\end{tabular}}
\medskip
Note. Observationally the crossing time $t_\times$ marks the beginning of the late sharp decline, denoting such a timescale by $t_{\rm p}$. $t_{\rm j}$ is the jet break time.
\end{table}