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changed to htings
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2
plot.sh
2
plot.sh
@ -4,7 +4,7 @@
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# document-rady plots.
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# document-rady plots.
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# Only analyses with this error type will be represented in the atlas
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# Only analyses with this error type will be represented in the atlas
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errtype="LF"
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errtype=$(cat err_type)
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ref_band="1367Å"
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ref_band="1367Å"
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case $1 in
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case $1 in
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@ -5,22 +5,27 @@
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# dataset(lightcurve directory), more?
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# dataset(lightcurve directory), more?
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ref_band=$(cat ref_band)
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ref_band=$(cat ref_band)
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ref_curve="/lightcurves/${ref_band}.lc"
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ref_curve="lightcurves/${ref_band}.lc"
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err_str=$(cat err_type)
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err_str=$(cat err_type)
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mkdir -p analyses/tables
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mkdir -p analyses/tables
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#for analysis in analyses/*
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for echo_curve in lightcurves/*
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for echo_curve in "lightcurves/*"
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do
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do
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# Grab and determine labels of analyses, skip if over the same band.
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# Grab and determine labels of analyses, skip if over the same band.
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echo_band=$(basename $echo_curve|sed 's|\(.*\)\.lc|\1|')
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echo_band=$(basename $echo_curve|sed 's|\(.*\)\.lc|\1|')
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if [[ $ref_band == $echo_band ]]; then continue; fi
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if [[ $ref_band == $echo_band ]]; then continue; fi
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echo "Running analysis for $echo_band ≺ $ref_band"
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echo "Analysing $echo_band ≺ $ref_band."
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python scripts/analyze_lightcurve.py "$ref_curve $echo_curve" >> "analyses/${ref_band}_≺_${echo_band}"
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if [[ -e "analyses/${ref_band}_≺_${echo_band}/" ]]; then
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scripts/extract_tables.pl
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echo "Results already exists. Create tables from stored results."
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cp analyses/${ref_band}_≺_${echo_band}/*.out .
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else
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python scripts/analyze_lightcurve.py $ref_curve $echo_curve >> /dev/null
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mkdir -p "analyses/${ref_band}_≺_${echo_band}"
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cp *.out analyses/${ref_band}_≺_${echo_band}/
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fi
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echo "Tabling PSD and time lags referred to ${ref_band} for $echo_band{${err_str}}."
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echo "Tabling PSD and time lags referred to ${ref_band} for $echo_band{${err_str}}."
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@ -31,10 +36,11 @@ echo "Tabling PSD and time lags referred to ${ref_band} for $echo_band{${err_str
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# Output curves to temporary files using perl script, move tables to
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# Output curves to temporary files using perl script, move tables to
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# permanent location. This just assumes there are no conflicts.
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# permanent location. This just assumes there are no conflicts.
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scripts/extract_tables.pl $analysis > /dev/null
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scripts/extract_tables.pl
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mv tmp.echoPSD $echoPSD_tabfile
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mv tmp.echoPSD $echoPSD_tabfile
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mv tmp.refPSD $refPSD_tabfile
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mv tmp.refPSD $refPSD_tabfile
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mv tmp.timelag $timelag_tabfile
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mv tmp.timelag $timelag_tabfile
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rm *.out
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done
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done
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rm tmp.*
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rm tmp.*
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@ -47,11 +47,12 @@ lc1_strength_err = [lc1_table[i, 2] for i in index]
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#### Get the psd for the first light curve ####
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#### Get the psd for the first light curve ####
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# These bin values determined summer 2016 for STORM III optical/UV lightcurves
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# These bin values determined summer 2016 for STORM III optical/UV lightcurves
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fqL = np.array([0.0049999999, 0.018619375, 0.044733049, 0.069336227, 0.10747115, 0.16658029, 0.25819945, 0.40020915, 0.62032418])
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# fqL = np.array([0.0049999999, 0.018619375, 0.044733049, 0.069336227, 0.10747115, 0.16658029, 0.25819945, 0.40020915, 0.62032418])
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# using utilities to set up frequency bins #
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# using utilities to set up frequency bins #
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# fqL = np.logspace(np.log10(1.1/seg_length),np.log10(.5/dt),7)
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seg_length = 256;
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# fqL = np.concatenate(([0.5/seg_length], fqL))
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fqL = np.logspace(np.log10(1.1/seg_length),np.log10(.5/dt),7)
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fqL = np.concatenate(([0.5/seg_length], fqL))
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nfq = len(fqL) - 1
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nfq = len(fqL) - 1
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@ -16,6 +16,8 @@ use constant PI => 4 * atan2(1, 1);
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our $verbose=1;
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our $verbose=1;
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our $debug=0;
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our $debug=0;
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if ($debug) { $verbose=1; }
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# This section locates the output data of interest in a
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# This section locates the output data of interest in a
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# psdlab output file.
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# psdlab output file.
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@ -68,19 +70,19 @@ foreach (@bin_bounds) {
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#say ($μ,":",$Δ);
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#say ($μ,":",$Δ);
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# push(@freq_coords_mean,$μ);
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# push(@freq_coords_mean,$μ);
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# push(@freq_coords_σ,$Δ);
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# push(@freq_coords_σ,$Δ);
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$function_bin{$μ} = {"Δ" => $Δ};
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$function_bin{$μ} = {"Δ" => $Δ,
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$function_bin{$μ}{"ref_PSD_μ"} = $ref_psd[$count];
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"ref_PSD_μ" => $ref_psd[$count],
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$function_bin{$μ}{"ref_PSD_σ"} = $ref_psd_σ[$count];
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"ref_PSD_σ" => $ref_psd_σ[$count],
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$function_bin{$μ}{"echo_PSD_μ"} = $echo_psd[$count];
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"echo_PSD_μ" => $echo_psd[$count],
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$function_bin{$μ}{"echo_PSD_σ"} = $echo_psd_σ[$count];
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"echo_PSD_σ" => $echo_psd_σ[$count],
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$function_bin{$μ}{"crsspctrm_μ"} = $crosssp_psd[$count];
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"crsspctrm_μ" => $crosssp_psd[$count],
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$function_bin{$μ}{"crsspctrm_σ"} = $crosssp_psd_σ[$count];
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"crsspctrm_σ" => $crosssp_psd_σ[$count],
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"timelag_μ" => $timelag[$count],
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"timelag_σ" => $timelag_σ[$count]};
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# $function_bin{$μ}{"φdiff_μ"} = $μ;
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# $function_bin{$μ}{"φdiff_μ"} = $μ;
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# $function_bin{$μ}{"φdiff_σ"} = $σ;
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# $function_bin{$μ}{"φdiff_σ"} = $σ;
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# $μ = $μ/(2*PI*$μ);
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# $μ = $μ/(2*PI*$μ);
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# $σ = $σ/(2*PI*$μ);
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# $σ = $σ/(2*PI*$μ);
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$function_bin{$μ}{"timelag_μ"} = $timelag[$count];
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$function_bin{$μ}{"timelag_σ"} = $timelag_σ[$count];
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$count = $count + 1;
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$count = $count + 1;
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}
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}
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@ -94,10 +96,20 @@ $numbins = keys %function_bin;
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say encode($charset,"$numbins frequency bins captured in output.");
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say encode($charset,"$numbins frequency bins captured in output.");
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if($verbose) {
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if($verbose) {
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say encode($charset,"freq μ freq σ");
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say encode($charset,"freq μ freq σ ref_PSD_μ ref_PSD_σ echo_PSD_μ echo_PSD_σ timelag_μ timelag_σ");
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while (each %function_bin ) {
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foreach (sort { $a <=> $b } keys %function_bin) {
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say encode($charset,
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say encode($charset,
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sprintf("%f %f",$_,$function_bin{$_}{"Δ"}));
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sprintf("%f %f %f %f %f %f %f %f ",
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$_,
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$function_bin{$_}{"Δ"},
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$function_bin{$_}{"ref_PSD_μ"},
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$function_bin{$_}{"ref_PSD_σ"},
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$function_bin{$_}{"echo_PSD_μ"},
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$function_bin{$_}{"echo_PSD_σ"},
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$function_bin{$_}{"timelag_μ"},
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$function_bin{$_}{"timelag_σ"}
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));
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}
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}
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}
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}
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@ -35,9 +35,14 @@ set logscale x
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set xtics auto font 'Times,9' offset 0,.5
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set xtics auto font 'Times,9' offset 0,.5
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set ytics auto font 'Times,9'
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set ytics auto font 'Times,9'
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set ytics add ('' -0.5 1,'' -1.5 1,'' -2.5 1,'' -3.5 1,'' -4.5 1)
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set ytics add ('' -0.5 1,'' -1.5 1,'' -2.5 1,'' -3.5 1,'' -4.5 1)
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set xrange [0.005:0.620];
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# xrange from 2016 REU freq bins
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#set xrange [0.005:0.620];
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set yrange [-5.5:0.5]
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set yrange [-5.5:0.5]
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# xrange pulled from example.py from first version of clag
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set xrange [0.001:5]
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set yrange [-5.5:0.5]
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set multiplot layout 6,3 rowsfirst
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set multiplot layout 6,3 rowsfirst
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