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update_section_4.5
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ObsCoreExtensionForRadioData.tex

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@@ -426,27 +426,27 @@ \subsection{Observational configuration and instrumental parameters}
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It is applicable to SD as well as to interferometry cases.
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\begin{longtable}{ | p{5cm}| p{7cm}| }
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\sptablerule
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\begin{longtable}{ | p{4.5cm}| p{7cm}| }
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\hline
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\textbf{value}&\textbf{definition}\cr
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\sptablerule
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\sptablerule
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\hline
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\hline
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\texttt{on-source}&pointed measurement\cr
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\sptablerule
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\hline
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\texttt{on-off}&switched measurements between two positions (source and background)\cr
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\sptablerule
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\hline
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\texttt{raster-map}&successive measurement spots on a rectangular mesh\cr
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\sptablerule
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\hline
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\texttt{on-the-fly-cross-scan}&successive continuous measurements along two orthogonal directions\cr
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\sptablerule
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\hline
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\texttt{on-the-fly-map}&successive continuous measurements along parallel directions\cr
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\sptablerule
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\hline
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\texttt{skydip}&long strip of measurements\cr
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\sptablerule
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\hline
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\texttt{frequency-switching}&switch from line frequency band to a lineless frequency band \cr
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% \texttt{target}&\texttt{extrasolar target follow up}\cr
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\sptablerule
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\hline
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\caption{Values and definitions of the scan\_mode attribute.}
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\label{tab:scanmode}
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\end{longtable}
@@ -531,88 +531,89 @@ \section{The ivoa.obscore\_radio table}
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%first table
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\begin{landscape}
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\begin{longtable}{ l p{4cm}| p{4cm}| l l |}
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\sptablerule
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\textbf{column name}&\textbf{definition}&\textbf{utype}&\textbf{ucd}&\textbf{unit}\cr
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\sptablerule
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\texttt{ s\_resolution\_min}&\texttt{ Angular resolution, longest baseline and max frequency dependent}&{ Char.SpatialAxis.\newline Resolution.Bounds.\newline Limits.LoLim}&{pos.angResolution;stat.min}&{arcsec}\cr
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\sptablerule
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\texttt{s\_resolution\_max}&\texttt{Angular resolution, longest baseline and min frequency dependent}&\texttt{Char.SpatialAxis.\newline Resolution.Bounds.\newline Limits.HiLim}&{pos.angResolution;stat.max}&arcsec\cr
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\sptablerule
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\texttt{s\_fov\_min}&\texttt{field of view diameter, min value, max frequency dependent}&\texttt{Char.SpatialAxis.\newline Coverage.Bounds.\newline Extent.LowLim}&{phys.angSize;instr.fov;\newline stat.min}&deg\cr
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\sptablerule
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\texttt{s\_fov\_max}&\texttt{field of view diameter, max value, min frequency dependent}&\texttt{Char.SpatialAxis.\newline Coverage.Bounds.\newline Extent.HiLim}&{phys.angSize;instr.fov;\newline stat.max}&deg\cr
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\sptablerule
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\texttt{f\_resolution}&\texttt{absolute spectral resolution in frequency}&\texttt{Char.SpectralAxis.\newline Coverage.Bounds\newline Limits.HiLim}&{em.freq;stat.max}&Khz\cr
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\sptablerule
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\begin{longtable}{l p{4.5cm}| p{4cm}| l l |}
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\hline
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\textbf{column name}&\textbf{definition}&\textbf{utype}&\textbf{ucd}&\textbf{unit}\\
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\hline
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\texttt{ s\_resolution\_min}&\texttt{ Angular resolution, \newline longest baseline and \newline max frequency dependent}&{ Char.SpatialAxis.\newline Resolution.Bounds.\newline Limits.LoLim}&{pos.angResolution;stat.min}&{arcsec}\\
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\hline
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\texttt{s\_resolution\_max}&\texttt{Angular resolution, \newline longest baseline and \newline min frequency dependent}&\texttt{Char.SpatialAxis.\newline Resolution.Bounds.\newline Limits.HiLim}&{pos.angResolution;stat.max}&arcsec \\
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\hline
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\texttt{s\_fov\_min}&\texttt{field of view diameter, \newline min value, \newline max frequency dependent}&\texttt{Char.SpatialAxis.\newline Coverage.Bounds.\newline Extent.LowLim}&{phys.angSize;instr.fov;\newline stat.min}&deg\\
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\hline
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\texttt{s\_fov\_max}&\texttt{field of view diameter, \newline max value, \newline min frequency dependent}&\texttt{Char.SpatialAxis.\newline Coverage.Bounds.\newline Extent.HiLim}&{phys.angSize;instr.fov;\newline stat.max}&deg\\
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\hline
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\texttt{f\_resolution}&\texttt{absolute spectral resolution\newline in frequency}&\texttt{Char.SpectralAxis.\newline Coverage.Bounds\newline Limits.HiLim}&{em.freq;stat.max}&Khz\\
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\hline
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\caption{ObsCore extension columns proposal for radio data in general.}
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\label{tab:ExtensionAtt}
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\end{longtable}
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\end{landscape}
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%second table
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\begin{landscape}
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\begin{longtable}{l p{4.5cm}| p{4cm}| l l | }
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\sptablerule
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\textbf{column name}&\textbf{definition}&\textbf{utype}&\textbf{ucd}&\textbf{unit}\cr
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\sptablerule
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\texttt{s\_largest\_angular\_scale}&\texttt{maximum scale in dataset, shortest baseline and for typical frequency}&\texttt{Char.SpatialAxis.\newline Resolution.Scale.\newline Limits.HiLim}&{phys.angSize;stat.max}&arcsec \cr
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\sptablerule
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\texttt{s\_largest\_angular\_scale\_min}&\texttt{smallest maximum scale in dataset, shortest baseline and for highest frequency}&\texttt{Char.SpatialAxis.\newline Resolution.Scale.\newline Limits.HiLim.Low}&{phys.angSize;stat.max}&arcsec \cr
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\sptablerule
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\texttt{s\_largest\_angular\_scale\_max}&\texttt{largest maximum scale in dataset, shortest baseline and for lowest frequency}&\texttt{Char.SpatialAxis.\newline Resolution.Scale.\newline Limits.HiLim.Hi}&{phys.angSize;stat.max}&arcsec \cr
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\sptablerule
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\begin{longtable}{l p{4.5cm}| p{4cm}| l l |}
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\hline
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\
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\textbf{column name}&\textbf{definition}&\textbf{utype}&\textbf{ucd}&\textbf{unit}\\
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\hline
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\texttt{s\_largest\_angular\_scale}&\texttt{maximum scale in dataset, shortest baseline and for typical frequency}&\texttt{Char.SpatialAxis.\newline Resolution.Scale.\newline Limits.HiLim}&{phys.angSize;stat.max}&arcsec \\
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\hline
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\texttt{s\_largest\_angular\_scale\_min}&\texttt{smallest maximum scale in dataset, shortest baseline and for highest frequency}&\texttt{Char.SpatialAxis.\newline Resolution.Scale.\newline Limits.HiLim.Low}&{phys.angSize;stat.max}&arcsec \\
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\hline
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\texttt{s\_largest\_angular\_scale\_max}&\texttt{largest maximum scale in dataset, shortest baseline and for lowest frequency}&\texttt{Char.SpatialAxis.\newline Resolution.Scale.\newline Limits.HiLim.Hi}&{phys.angSize;stat.max}&arcsec \\
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\hline
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%\texttt{f\_min}&\texttt{spectral coverage min in frequency}&\texttt{Char.SpectralAxis.\newline Coverage.Bounds\newline Limits.LoLim}&{em.freq;stat.min}&Mhz&radio\cr
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%\sptablerule
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%\hline
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%\texttt{f\_max}&\texttt{spectral coverage max in frequency}&\texttt{Char.SpectralAxis.\newline Coverage.Bounds\newline Limits.HiLim}&{em.freq;stat.max}&Mhz&radio\cr
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%\sptablerule
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%\hline
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%\texttt{t\_exp\_min}&\texttt{minimum integration time per sample}&\texttt{Char.TimeAxis.\newline Sampling.Extent\newline LoLim}&{time.duration;obs.exposure;\newline stat.min}&s&radio\cr
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%\sptablerule
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%\hline
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%\texttt{t\_exp\_max}&\texttt{maximum integration time per sample}&\texttt{Char.TimeAxis.\newline Sampling.Extent\newline HiLim}&{time.duration;obs.exposure;\newline stat.max}&s&radio\cr
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%\sptablerule
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%\hline
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%\texttt{t\_exp\_mean}&\texttt{average integration time per sample}&\texttt{Char.TimeAxis.\newline Sampling.Extent\newline HiLim}&{time.duration;obs.exposure\newline stat.mean}&s&radio\cr
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%\sptablerule
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\texttt{uv\_distance\_min}&\texttt{minimal distance in uv plane}&\texttt{Char.UVAxis.Coverage\newline .Bounds.Limits.LoLim}&stat.fourier;pos;\newline stat.min&m \cr
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\sptablerule
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\texttt{uv\_distance\_max}&\texttt{maximal distance in uv plane}&\texttt{Char.UVAxis.Coverage\newline .Bounds.Limits.LoLim}&stat.fourier;pos;\newline stat.max&m \cr
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\sptablerule
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\texttt{uv\_distribution\_ecc}&\texttt{eccentricity of uv distribution}&\texttt{Char.UVAxis.Coverage\newline .Bounds.Eccentricity}&stat.fourier;pos& null \cr
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\sptablerule
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\texttt{uv\_distribution\_fill}&\texttt{filling factor of uv distribution}&\texttt{Char.UVAxis.Coverage\newline .Bounds.FillingFactor}&stat.fourier;pos;\newline arith.ratio& null \cr
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\sptablerule
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%\hline
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\texttt{uv\_distance\_min}&\texttt{minimal distance in uv plane}&\texttt{Char.UVAxis.Coverage\newline .Bounds.Limits.LoLim}&stat.fourier;pos;stat.min&m \\
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\hline
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\texttt{uv\_distance\_max}&\texttt{maximal distance in uv plane}&\texttt{Char.UVAxis.Coverage\newline .Bounds.Limits.LoLim}&stat.fourier;pos;stat.max&m \\
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\hline
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\texttt{uv\_distribution\_ecc}&\texttt{eccentricity of uv distribution}&\texttt{Char.UVAxis.Coverage\newline .Bounds.Eccentricity}&stat.fourier;pos& null \\
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\hline
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\texttt{uv\_distribution\_fill}&\texttt{filling factor of uv distribution}&\texttt{Char.UVAxis.Coverage\newline .Bounds.FillingFactor}&stat.fourier;pos;\newline arith.ratio& null \\
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\hline
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%\texttt{s\_beam\_dirty}&\texttt{dirty beam}&\texttt{- (via DataLink}&{via DataLink}&&interferometry\cr
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%\sptablerule
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%\hline
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%\texttt{phase\_amplitude}&\texttt{phase amplitude plot}&\texttt{via DataLink}&{via DataLink}&&interferometry\cr
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%\sptablerule
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%\hline
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%\texttt{frequency\_amplitude}&\texttt{dirty beam}&\texttt{via DataLink}&{via DataLink}&&interferometry\cr
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%\sptablerule
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%\hline
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\caption{ObsCore extension columns proposal for radio interferometry.}
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\label{tab:ExtensionAtt_interferometry}
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\end{longtable}
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\end{landscape}
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%third table
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\begin{landscape}
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\begin{longtable}{l p{4cm} | p{4cm} | l l l }
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\sptablerule
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\textbf{column name}&\textbf{definition}&\textbf{utype}&\textbf{ucd}&\textbf{unit}\cr
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\texttt{instr\_tel\_number}&\texttt{number of antennas in array}&\texttt{Provenance.ObsConfig.\newline Instrument.Array.\newline AntNumber}&meta.number;instr.param& \cr
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\sptablerule
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\begin{longtable}{l p{4.2cm} | p{4cm} | l l l }
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\hline
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\textbf{column name}&\textbf{definition}&\textbf{utype}&\textbf{ucd}&\textbf{unit}\\
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\hline
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\texttt{instr\_tel\_number}&\texttt{number of antennas in array}&\texttt{Provenance.ObsConfig.\newline Instrument.Array.\newline AntNumber}&meta.number;instr.param& \\
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\hline
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% same for all antenae features
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\texttt{instr\_tel\_min\_dist}&\texttt{minimum distance between antennas in array}&\texttt{Provenance.ObsConfig.\newline Instrument.Array.\newline MinDist}&instr.baseline;stat.min&m \cr
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\sptablerule
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\texttt{instr\_tel\_max\_dist}&\texttt{maximum distance between antennas in array}&\texttt{Provenance.ObsConfig.\newline Instrument.Array.\newline MaxDist}&instr.baseline;stat.max&m \cr
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\sptablerule
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\texttt{instr\_tel\_diameter}&\texttt{diameter of telecope or antennas in array}&\texttt{Provenance.ObsConfig.\newline Instrument.Array.\newline Diameter}&instr.param&m \cr
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\sptablerule
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\texttt{instr\_feed}&\texttt{number of feeds}&\texttt{Provenance.ObsConfig.\newline Instrument.Feed}&instr.param& \cr
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\sptablerule
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\texttt{scan\_mode}&\texttt{sky and spectral axis scan mode }&\texttt{Provenance.\newline Observation.\newline sky\_scan\_mode}&instr.param& \cr
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\sptablerule
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\texttt{tracking\_type}&\texttt{target tracking modes}&\texttt{Provenance.\newline Observation.\newline tracking\_mode}&instr.param& \cr
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\sptablerule
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\texttt{instr\_tel\_min\_dist}&\texttt{minimum distance between antennas in array}&\texttt{Provenance.ObsConfig.\newline Instrument.Array.\newline MinDist}&instr.baseline;stat.min&m \\
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\hline
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\texttt{instr\_tel\_max\_dist}&\texttt{maximum distance between antennas in array}&\texttt{Provenance.ObsConfig.\newline Instrument.Array.\newline MaxDist}&instr.baseline;stat.max&m \\
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\hline
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\texttt{instr\_tel\_diameter}&\texttt{diameter of telecope or antennas in array}&\texttt{Provenance.ObsConfig.\newline Instrument.Array.\newline Diameter}&instr.param&m \\
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\hline
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\texttt{instr\_feed}&\texttt{number of feeds}&\texttt{Provenance.ObsConfig.\newline Instrument.Feed}&instr.param& \\
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\hline
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\texttt{scan\_mode}&\texttt{sky and spectral axis scan mode }&\texttt{Provenance.\newline Observation.\newline sky\_scan\_mode}&instr.param& \\
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\hline
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\texttt{tracking\_type}&\texttt{target tracking modes}&\texttt{Provenance.\newline Observation.\newline tracking\_mode}&instr.param& \\
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\hline
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\caption{ObsCore radio extension columns for instrumental parameters.}
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\label{tab:ExtensionAtt_instrumental}

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