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diff --git a/ising_scaling.tex b/ising_scaling.tex
index ca1bd15..d4ea507 100644
--- a/ising_scaling.tex
+++ b/ising_scaling.tex
@@ -582,22 +582,30 @@ accuracy of the fit results can be checked against the known values here.
\begin{table}\label{tab:fits}
\begin{tabular}{c|lll}
$m$ & \multicolumn{1}{c}{$\mathcal F_-^{(m)}$} & $\mathcal F_0^{(m)}$ & $\mathcal F_+^{(m)}$ \\\hline
- 0 & \hphantom{$-$}0 & $-1.197\,733\,383\,797\ldots$ & \hphantom{$-$}0 \\
- 1 & $-1.357\,838\,341\,707\ldots$ & \hphantom{$-$}$0.318\,810\,124\,891\ldots$ & \hphantom{$-$}0 \\
- 2 & $-0.048\,953\,289\,720\ldots$ & \hphantom{$-$}$0.110\,886\,196\,683(2)$ & $-1.845\,228\,078\,233\ldots$ \\
- 3 & \hphantom{$-$}$0.038\,863\,932(3)$ & $-0.016\,426\,894\,65(2)$ & \hphantom{$-$}0 \\
- 4 & $-0.068\,362\,119(2)$ & $-2.639\,978(1)\times10^{-4}$ & \hphantom{$-$}$8.333\,711\,750(5)$ \\
- 5 & \hphantom{$-$}$0.183\,883\,70(1)$ & \hphantom{$-$}$5.140\,526(1)\times10^{-4}$ & \hphantom{$-$}0 \\
- 6 & $-0.659\,171\,4(1)$ & \hphantom{$-$}$2.088\,65(1)\times 10^{-4}$ & $-95.168\,96(1)$ \\
- 7 & \hphantom{$-$}$2.937\,665(3)$ & \hphantom{$-$}$4.481\,9(1)\times10^{-5}$ & \hphantom{$-$}0 \\
- 8 & $-15.61(1)$ & \hphantom{$-$}$3.16\times10^{-7}$ & \hphantom{$-$}1457.62(3) \\
- 9 & \hphantom{$-$}96.76 & $-4.31\times10^{-6}$ & \hphantom{$-$}0 \\
- 10 & $-679$ & $-1.99\times10^{-6}$ & $-25\,891(2)$ \\
- 11 & \hphantom{$-$}$5.34\times10^3$ & & \hphantom{$-$}0 \\
- 12 & $-4.66\times10^4$ & & \hphantom{$-$}$5.02\times10^5$ \\
- 13 & \hphantom{$-$}$4.46\times10^5$ & & \hphantom{$-$}0 \\
- 14 & $-4.66\times10^6$ & & $-1.04\times10^7$
+ 0 & \hphantom{$-$}0 & $-1.197\,733\,383\,797\ldots$ & \hphantom{$-$}0 \\
+ 1 & $-1.357\,838\,341\,707\ldots$ & \hphantom{$-$}$0.318\,810\,124\,891\ldots$ & \hphantom{$-$}0 \\
+ 2 & $-0.048\,953\,289\,720\ldots$ & \hphantom{$-$}$0.110\,886\,196\,683(2)$ & $-1.845\,228\,078\,233\ldots$ \\
+ 3 & \hphantom{$-$}$0.038\,863\,932(3)$ & $-0.016\,426\,894\,65(2)$ & \hphantom{$-$}0 \\
+ 4 & $-0.068\,362\,119(2)$ & $-2.639\,978(1)\times10^{-4}$ & \hphantom{$-$}$8.333\,711\,750(5)$ \\
+ 5 & \hphantom{$-$}$0.183\,883\,70(1)$ & \hphantom{$-$}$5.140\,526(1)\times10^{-4}$ & \hphantom{$-$}0 \\
+ 6 & $-0.659\,171\,4(1)$ & \hphantom{$-$}$2.088\,65(1)\times 10^{-4}$ & $-95.168\,96(1)$ \\
+ 7 & \hphantom{$-$}$2.937\,665(3)$ & \hphantom{$-$}$4.481\,9(1)\times10^{-5}$ & \hphantom{$-$}0 \\
+ 8 & $-15.61(1)$ & \hphantom{$-$}$3.16\times10^{-7}$ & \hphantom{$-$}1457.62(3) \\
+ 9 & \hphantom{$-$}96.76 & $-4.31\times10^{-6}$ & \hphantom{$-$}0 \\
+ 10 & $-679$ & $-1.99\times10^{-6}$ & $-25\,891(2)$ \\
+ 11 & \hphantom{$-$}$5.34\times10^3$ & & \hphantom{$-$}0 \\
+ 12 & $-4.66\times10^4$ & & \hphantom{$-$}$5.02\times10^5$ \\
+ 13 & \hphantom{$-$}$4.46\times10^5$ & & \hphantom{$-$}0 \\
+ 14 & $-4.66\times10^6$ & & $-1.04\times10^7$
\end{tabular}
+ \caption{
+ Known series coefficients for the universal scaling functions. This with
+ trailing dots are known exactly or have closed integral representations.
+ Those with listed uncertainties are taken from Mangazeev \textit{et al.}\
+ \cite{Mangazeev_2008_Variational}. Those without are taken from Fonseca
+ \textit{et al.}, and are assumed to be accurate to within their last digit
+ \cite{Fonseca_2003_Ising}.
+ }
\end{table}
\begin{table}