Commit 7c5bbee4 authored by Gregory Ashton's avatar Gregory Ashton
Browse files

Improve number of Sig. Fig of volume estimates and add text

parent f75c2788
\begin{tabular}{c|cccccc}
Stage & $\Nseg$ & $\Tcoh^{\rm days}$ &$\Nsteps$ & $\V$ & $\Vsky$ & $\Vpe$ \\ \hline
0 & 20 & 5.0 & 50 & $4{\times}10^{2}$ & 8.0 & 60.0 \\
1 & 11 & 9.1 & 50 & $4{\times}10^{3}$ & 20.0 & $2{\times}10^{2}$ \\
2 & 6 & 16.7 & 50 & $4{\times}10^{4}$ & 70.0 & $6{\times}10^{2}$ \\
3 & 3 & 33.3 & 50 & $3{\times}10^{5}$ & $1{\times}10^{2}$ & $2{\times}10^{3}$ \\
4 & 1 & 100.0 & 50,50 & $2{\times}10^{6}$ & $2{\times}10^{2}$ & $1{\times}10^{4}$ \\
0 & 20 & 5.0 & 50 & $4.2{\times}10^{2}$ & 7.5 & 56.0 \\
1 & 11 & 9.1 & 50 & $4.4{\times}10^{3}$ & 24.0 & $1.8{\times}10^{2}$ \\
2 & 6 & 16.7 & 50 & $4.2{\times}10^{4}$ & 69.0 & $6.1{\times}10^{2}$ \\
3 & 3 & 33.3 & 50 & $2.8{\times}10^{5}$ & $1.2{\times}10^{2}$ & $2.4{\times}10^{3}$ \\
4 & 1 & 100.0 & 50,50 & $2.0{\times}10^{6}$ & $2.0{\times}10^{2}$ & $1.0{\times}10^{4}$ \\
\end{tabular}
\begin{tabular}{c|cccc}
Stage & $\Nseg$ & $\Tcoh^{\rm days}$ &$\Nsteps$ & $\Vpe$ \\ \hline
0 & 20 & 5.0 & 25 & 60.0 \\
1 & 7 & 14.3 & 25 & $5{\times}10^{2}$ \\
2 & 2 & 50.0 & 25 & $5{\times}10^{3}$ \\
3 & 1 & 100.0 & 25,25 & $1{\times}10^{4}$ \\
0 & 20 & 5.0 & 25 & 56.0 \\
1 & 7 & 14.3 & 25 & $4.5{\times}10^{2}$ \\
2 & 2 & 50.0 & 25 & $5.0{\times}10^{3}$ \\
3 & 1 & 100.0 & 25,25 & $1.0{\times}10^{4}$ \\
\end{tabular}
......@@ -1039,7 +1039,9 @@ in Figure~\ref{fig_allsky_MC_follow_up}.
\begin{table}[htb]
\caption{Run-setup for the all-sky follow-up Monte-Carlo study, generated with
$\mathcal{R}=10$ and $\Nseg^0=20$. Note that the number of representative
templates will vary over the sky. \comment{Hmm?}}
templates will vary over the sky, these values are computed at the equator
(i.e. $\delta=0$) which was found to produce the largest volumes - potentially
because the sky patch is kept constant.}
\label{tab_allsky_MC_follow_up}
\input{allsky_setup_run_setup}
\end{table}
......
......@@ -87,7 +87,7 @@ def round_to_n(x, n):
return round(x * factor) / factor
def texify_float(x, d=1):
def texify_float(x, d=2):
if type(x) == str:
return x
x = round_to_n(x, d)
......
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