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\begin{table}%t2
\caption{\label{tab:localKSlaw}Local KS law indices ($n$) obtained using the first fitting method for the three SFR tracers.}
\par
%\centering
\small
{
\begin{tabular}{lllllllllllllllllll}
\hline \hline\noalign{\smallskip}
Res. & \multicolumn{6}{c}{Molecular gas} & \multicolumn{6}{c}{Atomic
gas} & \multicolumn{6}{c}{Total gas} \\
(pc) & \multicolumn{2}{c}{\Ha} & \multicolumn{2}{c}{FUV} & \multicolumn{2}{c}{Bol.}
& \multicolumn{2}{c}{\Ha} & \multicolumn{2}{c}{FUV} & \multicolumn{2}{c}{Bol.}
& \multicolumn{2}{c}{\Ha} & \multicolumn{2}{c}{FUV} & \multicolumn{2}{c}{Bol.} \\
& $n$ & $r$ & $n$ & $r$ & $n$ & $r$ & $n$ & $r$ & $n$ & $r$ & $n$ & $r$ & $n$
& $r$ & $n$ & $r$ & $n$ & $r$ \\
\hline
180 & 1.44 (43) & 0.21 & 1.12 (24) & 0.24 & 1.12 (30) & 0.24 &
2.53 (14) & 0.19 & 1.96 (26) & 0.23 & 1.96 (23) & 0.23 &
2.59 (18) & 0.21 & 1.91 (19) & 0.26 & 1.90 (19) & 0.26\\
360 & 1.54 (16) & 0.26 & 1.17 (25) & 0.29 & 1.17 (28) & 0.29 &
2.59 (12) & 0.24 & 2.10 (14) & 0.29 & 2.11 (15) & 0.29 &
2.82 (8) & 0.27 & 2.09 (17) & 0.32 & 2.09 (18) & 0.33\\
540 & 1.64 (20) & 0.29 & 1.17 (9) & 0.33 & 1.17 (11) & 0.33 &
2.88 (11) & 0.26 & 2.18 (10) & 0.30 & 2.24 (15) & 0.31 &
3.39 (16) & 0.32 & 2.40 (13) & 0.38 & 2.41 (12) & 0.38\\
720 & 1.59 (7) & 0.31 & 1.16 (11) & 0.32 & 1.15 (9) & 0.32 &
3.16 (11) & 0.31 & 2.44 (10) & 0.36 & 2.44 (13) & 0.36 &
3.38 (10) & 0.28 & 2.29 (9) & 0.33 & 2.30 (12) & 0.33\\
900 & 1.74 (10) & 0.38 & 1.28 (6) & 0.40 & 1.28 (6) & 0.40 &
3.29 (10) & 0.32 & 2.09 (7) & 0.39 & 2.10 (8) & 0.39 &
3.49 (9) & 0.44 & 2.22 (6) & 0.53 & 2.24 (7) & 0.53\\
1080 & 1.81 (15) & 0.45 & 1.27 (13) & 0.55 & 1.22 (8) & 0.55 &
3.62 (6) & 0.32 & 2.80 (7) & 0.38 & 2.85 (8) & 0.38 &
3.98 (13) & 0.48 & 2.27 (4) & 0.56 & 2.28 (4) & 0.57\\
1260 & 1.62 (8) & 0.56 & 1.18 (4) & 0.63 & 1.17 (5) & 0.64 &
2.77 (4) & 0.35 & 2.82 (5) & 0.40 & 2.83 (7) & 0.40 &
4.08 (11) & 0.52 & 3.05 (11) & 0.60 & 2.88 (12) & 0.60\\
1440 & 1.68 (3) & 0.46 & 1.38 (8) & 0.51 & 1.39 (6) & 0.51 &
2.79 (2) & 0.36 & 2.73 (3) & 0.46 & 2.74 (3) & 0.46 &
3.18 (3) & 0.50 & 2.60 (4) & 0.61 & 2.61 (4) & 0.61\\
\hline
\end{tabular}}
\tablefoot{The number of iterations taken before the best-fit slope is stabilized is given in brackets. The Pearson coefficients~($r$) are the ones obtained with the original distributions of points (i.e.~before the first iteration).}
\end{table}
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