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IX/58
  2SXPS Swift X-ray telescope point source catalogue (Evans+, 2020)
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1.IX/58/2sxps(c)The 2SXPS Catalogue of Swift X-ray telescope Point Sources (206335 rows) (released 2026-01-15)
[METAtab] [METAcola]
on-line documentation at http://www.swift.ac.uk/2SXPS/docs.php
2.IX/58/2sxpscle(c)The 2SXPS Catalogue of Swift X-ray telescope Point Sources "clean" version (146768 rows) (released 2026-01-15)
[METAtab] [METAcola]
on-line documentation at http://www.swift.ac.uk/2SXPS/docs.php
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Column  Constraint Explain   (UCD)
  (ALL)recno  Record number assigned by the VizieR team. Should Not be used for identification. (meta.record)
   (ALL)2SXPS  Numerical unique source identifier within 2SXPS (2SXPS_ID) (meta.id;meta.main)
   (ALL)IAUName (char) IAU-format name, 2SXPS JHHMMSS±ddmmsss (IAUName) (meta.id)
   (ALL)RAJ2000 deg (i) Right Ascension (J2000) (RA) (pos.eq.ra;meta.main)
   (ALL)DEJ2000 deg (i) Declination (J2000) (Decl) (pos.eq.dec;meta.main)
   (ALL)Err90 arcsec Position uncertainty, 90% confidence, radial, assumed to be Rayleigh-distributed (Err90) (stat.error)
   (ALL)A   [0/1] Provenance of source astrometry. 0=Swift star tracker, 1=XRT/2MASS astrometry (AstromType) (meta.ref;pos.frame)
   (ALL)GLON deg Galactic longitude (l) (pos.galactic.lon)
   (ALL)GLAT deg Galactic latitude (b) (pos.galactic.lat)
   (ALL)OffAxis arcmin The mean angular distance of the source from the XRT boresight in all observations within which the source was detected (MeanOffAxisAngle) (Note 1)   (pos.angDistance;stat.mean)
   (ALL)DNN arcsec The distance to the closest 2SXPS source to this one (NearestNeighbour) (pos.angDistance)

ALL cols
    
 (i)indexed column
   (ALL)DNNOK arcsec The distance to the closest 2SXPS source to this one which is ranked Good or Reasonable and has no other DetFlag bits set (NearestOKNeighbour) (pos.angDistance)
   (ALL)t.exp s The total exposure at the source location in the catalogue (Exposure) (time.expo)
   (ALL)t.start1 s (n)The UTC date & time of the start of the first observation in 2SXPS which covered the source location (FirstObsDate) (time.epoch)
   (ALL)t.stop1 s (n)The UTC date & time of the end of the last observation in 2SXPS which covered the source location (LastObsDate) (time.epoch)
   (ALL)time.start1 s The time of the start of the first observation in 2SXPS which covered the source location, in Swift Mission Elapsed Time (FirstObsMET) (Note 2)   (time.expo)
   (ALL)time.stop1 s The time of the end of the last observation in 2SXPS which covered the source location in, Swift Mission Elapsed Time (LastObsMET) (Note 2)   (time.expo)
   (ALL)t.start2 s (n)The UTC date & time of the start of the first observation in 2SXPS in which the source count rate is inconsistent with 0 at the 3-sigma level (FirstDetDate) (time.epoch)
   (ALL)t.stop2 s (n)The UTC date & time of the end of the last observation in 2SXPS in which the source count rate is inconsistent with 0 at the 3-sigma level (LastDetDate) (time.epoch)
   (ALL)time.start2 s The time of the start of the first observation in 2SXPS in which the source count rate is inconsistent with 0 at the 3-sigma level, in Swift Mission Elapsed Time (FirstDetMET) (Note 2)   (time.expo)
   (ALL)time.stop2 s The time of the end of the last observation in 2SXPS in which the source count rate is inconsistent with 0 at the 3-sigma level, in Swift Mission Elapsed Time (LastDetMET) (Note 2)   (time.expo)
   (ALL)t.start3 s (n)The UTC date & time of the start of the first observation in 2SXPS in which the source is detected in the blind search (FirstBlindDetDate) (time.epoch)
   (ALL)t.stop3 s (n)The UTC date & time of the end of the last observation in 2SXPS in which the source is detected in the blind search (LastBlindDetDate) (time.epoch)
   (ALL)time.start3 s The time of the start of the first observation in 2SXPS in which the source is detected in the blind search, in Swift Mission Elapsed Time (FirstBlindDetMET) (Note 2)   (time.expo)

ALL cols
    
(n) indicates a possible blank or NULL column(i)indexed column
   (ALL)time.stop3 s The time of the end of the last observation in 2SXPS in which the source is detected in the blind search, in Swift Mission Elapsed Time (LastBlindDetMET) (Note 2)   (time.expo)
   (ALL)NObs  The number of observations covering this source's position (NumObs) (meta.number)
   (ALL)NBlind  The number of observations in which this source was found in a blind search (NumBlindDetObs) (meta.number)
   (ALL)NDet  The number of observations in which this source is detected (NumDetObs) (meta.number)
   (ALL)NBest  The ID of the 'best' detection (BestDetectionID) (meta.number)
   (ALL)F0  Whether the count-rate in the 0.3-10keV band is inconsistent with 0 at the 3-sigma level (NonBlindDet_band0) (meta.code)
   (ALL)F1  Whether the count-rate in the 0.3-1keV band is inconsistent with 0 at the 3-sigma level (NonBlindDet_band1) (meta.code)
   (ALL)F2  Whether the count-rate in the 1-2keV band is inconsistent with 0 at the 3-sigma level (NonBlindDet_band2) (meta.code)
   (ALL)F3  Whether the count-rate in the 2-10keV band is inconsistent with 0 at the 3-sigma level (NonBlindDet_band3) (meta.code)
   (ALL)Det  (n) The final source detection flag (DetFlag) (Note 3)   (meta.code.error;phys.atmol.final)
   (ALL)FField  (n) The final fieldFlag for this source (FieldFlag) (Note 4)   (meta.code)
   (ALL)Det0  (n) The final detection flag the 0.3-10keV band (DetFlag_band0) (Note 3)   (meta.code.qual)
   (ALL)Det1  (n) The final detection flag the 0.3-1keV band (DetFlag_band1) (Note 3)   (meta.code.qual)

ALL cols
    
(n) indicates a possible blank or NULL column(i)indexed column
   (ALL)Det2  (n) The final detection flag in the 1-2keV band (DetFlag_band2) (Note 3)   (meta.code.qual)
   (ALL)Det3  (n) The final detection flag in the 2-10keV band (DetFlag_band3) (Note 3)   (meta.code.qual)
   (ALL)Warning mag The worst optical loading warning from all detections of this source (Note 5)   (meta.code)
   (ALL)DetSLW  Whether any detection of this source occurred within fitted stray light rings (StrayLightWarning) (meta.code)
   (ALL)DetNBSW  Whether any detection of this source occurred within the PSF wings of a bright object (NearBrightSourceWarning) (meta.code)
   (ALL)Dup  Whether this source is potentially an alias (i.e. duplicate) of another source (IsPotentialAlias) (meta.code)
   (ALL)ONames (char) The list of other sources which may be aliases of this one (PotentialAliasList) (meta.id)
   (ALL)CR0 ct/s (n) The mean count-rate in the 0.3-10keV band (Rate_band0) (phot.count;em.X-ray)
   (ALL)E_CR0 ct/s (n) The 1-sigma positive uncertainty on the mean count-rate in the 0.3-10keV band (Rateband0pos) (stat.error;stat.max)
   (ALL)e_CR0 ct/s (n) []? The 1-sigma negative uncertainty on the mean count-rate in the 0.3-10keV band (Rateband0neg) (stat.error)
   (ALL)HR1  (n) The aggregate HR1 hardness ratio of the source (HR1) (phot.flux;arith.ratio)
   (ALL)E_HR1  (n) The 1-sigma positive uncertainty on the aggregate HR1 hardness ratio of the source (HR1_pos) (stat.error;stat.max)
   (ALL)e_HR1  (n) []? The 1-sigma negative uncertainty on the aggregate HR1 hardness ratio of the source (HR1_neg) (stat.error)

ALL cols
    
(n) indicates a possible blank or NULL column(i)indexed column
   (ALL)HR2  (n) The aggregate HR2 hardness ratio of the source (HR2) (phot.flux;arith.ratio)
   (ALL)E_HR2  (n) The 1-sigma positive uncertainty on the aggregate HR2 hardness ratio of the source (HR2_pos) (stat.error;stat.max)
   (ALL)e_HR2  (n) []? The 1-sigma negative uncertainty on the aggregate HR2 hardness ratio of the source (HR2_neg) (stat.error)
   (ALL)CR1 ct/s (n) The mean count-rate in the 0.3-1keV band (Rate_band1) (phot.count;em.X-ray)
   (ALL)E_CR1 ct/s (n) The 1-sigma positive uncertainty on the mean count-rate in the 0.3-1keV band (Rateband1pos) (stat.error;stat.max)
   (ALL)e_CR1 ct/s (n) []? The 1-sigma negative uncertainty on the mean count-rate in the 0.3-1keV band (Rateband1neg) (stat.error)
   (ALL)CR2 ct/s (n) The mean count-rate in the 1-2keV band (Rate_band2) (phot.count;em.X-ray)
   (ALL)E_CR2 ct/s (n) The 1-sigma positive uncertainty on the mean count-rate in the 1-2keV band (Rateband2pos) (stat.error;stat.max)
   (ALL)e_CR2 ct/s (n) []? The 1-sigma negative uncertainty on the mean count-rate in the 1-2keV band (Rateband2neg) (stat.error)
   (ALL)CR3 ct/s (n) The mean count-rate in the 2-10keV band (Rate_band3) (phot.count;em.X-ray)
   (ALL)E_CR3 ct/s (n) The 1-sigma positive uncertainty on the mean count-rate in the 2-10keV band (Rateband3pos) (stat.error;stat.max)
   (ALL)e_CR3 ct/s (n) []? The 1-sigma negative uncertainty on the mean count-rate in the 2-10keV band (Rateband3neg) (stat.error)
   (ALL)Ct0 ct (n) The total number of counts in the source region in the 0.3-10keV band (Counts_band0) (phot.count;em.X-ray)

ALL cols
    
(n) indicates a possible blank or NULL column(i)indexed column
   (ALL)Ct1 ct (n) The total number of counts in the source region in the 0.3-1keV band (Counts_band1) (phot.count;em.X-ray)
   (ALL)Ct2 ct (n) The total number of counts in the source region in the 1-2keV band (Counts_band2) (phot.count;em.X-ray)
   (ALL)Ct3 ct (n) The total number of counts in the source region in the 2-10keV band (Counts_band3) (phot.count;em.X-ray)
   (ALL)bgCt0 ct (n) The total number of background counts expected in the source region in the 0.3-10keV band (BgCounts_band0) (phot.count;em.X-ray)
   (ALL)bgCt1 ct (n) The total number of background counts expected in the source region in the 0.3-1keV band (BgCounts_band1) (phot.count;em.X-ray)
   (ALL)bgCt2 ct (n) The total number of background counts expected in the source region in the 1-2keV band (BgCounts_band2) (phot.count;em.X-ray)
   (ALL)bgCt3 ct (n) The total number of background counts expected in the source region in the 2-10keV band (BgCounts_band3) (phot.count;em.X-ray)
   (ALL)CF0  (n) The PSF correction factor in the 0.3-10keV band (RateCF_band0) (instr.param)
   (ALL)CF1  (n) The PSF correction factor in the 0.3-1keV band (RateCF_band1) (instr.param)
   (ALL)CF2  (n) The PSF correction factor in the 1-2keV band (RateCF_band2) (instr.param)
   (ALL)CF3  (n) The PSF correction factor in the 2-10keV band (RateCF_band3) (instr.param)
   (ALL)FUL0 ct/s (n) The 3-sigma upper confidence limit on the count-rate in the 0.3-10keV band (UL_band0) (phot.flux;em.X-ray)
   (ALL)FUL1 ct/s (n) The 3-sigma upper confidence limit on the count-rate in the 0.3-1keV band (UL_band1) (phot.flux;em.X-ray)

ALL cols
    
(n) indicates a possible blank or NULL column(i)indexed column
   (ALL)FUL2 ct/s (n) The 3-sigma upper confidence limit on the count-rate in the 1-2keV band (UL_band2) (phot.flux;em.X-ray)
   (ALL)FUL3 ct/s (n) The 3-sigma upper confidence limit on the count-rate in the 2-10keV band (UL_band3) (phot.flux;em.X-ray)
   (ALL)PCR0 ct/s (n) The peak count-rate in the 0.3-10keV band (PeakRate_band0) (phot.count;em.X-ray)
   (ALL)E_PCR0 ct/s (n) The 1-sigma positive uncertainty on the peak count-rate in the 0.3-10keV band (PeakRateband0pos) (stat.error;stat.max)
   (ALL)e_PCR0 ct/s (n) []? The 1-sigma negative uncertainty on the peak count-rate in the 0.3-10keV band (PeakRateband0neg) (stat.error)
   (ALL)PCR1 ct/s (n) The peak count-rate in the 0.3-1keV band (PeakRate_band1) (phot.count;em.X-ray)
   (ALL)E_PCR1 ct/s (n) The 1-sigma positive uncertainty on the peak count-rate in the 0.3-1keV band (PeakRateband1pos) (stat.error;stat.max)
   (ALL)e_PCR1 ct/s (n) []? The 1-sigma negative uncertainty on the peak count-rate in the 0.3-1keV band (PeakRateband1neg) (stat.error)
   (ALL)PCR2 ct/s (n) The peak count-rate in the 1-2keV band (PeakRate_band2) (phot.count;em.X-ray)
   (ALL)E_PCR2 ct/s (n) The 1-sigma positive uncertainty on the peak count-rate in the 1-2keV band (PeakRateband2pos) (stat.error;stat.max)
   (ALL)e_PCR2 ct/s (n) []? The 1-sigma negative uncertainty on the peak count-rate in the 1-2keV band (PeakRateband2neg) (stat.error)
   (ALL)PCR3 ct/s (n) The peak count-rate in the 2-10keV band (PeakRate_band3) (phot.count;em.X-ray)
   (ALL)E_PCR3 ct/s (n) The 1-sigma positive uncertainty on the peak count-rate in the 2-10keV band (PeakRateband3pos) (stat.error;stat.max)

ALL cols
    
(n) indicates a possible blank or NULL column(i)indexed column
   (ALL)e_PCR3 ct/s (n) []? The 1-sigma negative uncertainty on the peak count-rate in the 2-10keV band (PeakRateband3neg) (stat.error)
   (ALL)NHg cm-2 The Galactic absorption column in the direction of the source, from Willingale et al (2013) (GalacticNH) (phys.absorption.gal)
   (ALL)PcstS0  (n) The probability that the source count-rate in the 0.3-10keV band does not vary between snapshots (PvarPchiSnapshot_band0) (Note 6)   (src.var.index)
   (ALL)PcstS1  (n) The probability that the source count-rate in the 0.3-1keV band does not vary between snapshots (PvarPchiSnapshot_band1) (Note 6)   (src.var.index)
   (ALL)PcstS2  (n) The probability that the source count-rate in the 1-2keV band does not vary between snapshots (PvarPchiSnapshot_band2) (Note 6)   (src.var.index)
   (ALL)PcstS3  (n) The probability that the source count-rate in the 2-10keV band does not vary between snapshots (PvarPchiSnapshot_band3) (Note 6)   (src.var.index)
   (ALL)PcstSHR1  (n) The probability that the source HR1 hardness ratio does not vary between snapshots (PvarPchiSnapshot_HR1) (Note 6)   (src.var.index)
   (ALL)PcstSHR2  (n) The probability that the source HR2 hardness ratio does not vary between snapshots (PvarPchiSnapshot_HR2) (Note 6)   (src.var.index)
   (ALL)Pcst0  (n) The probability that the source count-rate in the 0.3-10keV band does not vary between observations (PvarPchiObsID_band0) (Note 6)   (src.var.index)
   (ALL)Pcst1  (n) The probability that the source count-rate in the 0.3-1keV band does not vary between observations (PvarPchiObsID_band1) (Note 6)   (src.var.index)
   (ALL)Pcst2  (n) The probability that the source count-rate in the 1-2keV band does not vary between observations (PvarPchiObsID_band2) (Note 6)   (src.var.index)
   (ALL)Pcst3  (n) The probability that the source count-rate in the 2-10keV band does not vary between observations (PvarPchiObsID_band3) (Note 6)   (src.var.index)
   (ALL)PcstHR1  (n) The probability that the source HR1 hardness ratio does not vary between observations (PvarPchiObsID_HR1) (Note 6)   (src.var.index)

ALL cols
    
(n) indicates a possible blank or NULL column(i)indexed column
   (ALL)PcstHR2  (n) The probability that the source HR2 hardness ratio does not vary between observations (PvarPchiObsID_HR2) (Note 6)   (src.var.index)
   (ALL)Pow  (n) Which method of determining the spectral properties assuming a power-law was used (WhichPow) (Note 7)   (meta.code)
   (ALL)APEC  (n) Which method of determining the spectral properties assuming an APEC was used (WhichAPEC) (Note 7)   (meta.code)
   (ALL)CFO0 mJ/m2/ct (n) Energy Conversion Factor from 0.3-10keV count-rate to 0.3-10keV observed flux, assuming a power-law spectrum (PowECFO) (instr.param)
   (ALL)CFU0 (char) mJ/m2/ct Energy Conversion Factor from 0.3-10keV count-rate to 0.3-10keV unabsorbed flux, assuming a power-law spectrum (PowECFU) (instr.param)
   (ALL)FPO0 mW/m2 (n) The mean 0.3-10keV observed flux assuming a power-law spectrum (PowFlux) (phot.flux;em.X-ray)
   (ALL)E_FPO0 mW/m2 (n) The 1-sigma positive uncertainty on the mean 0.3-10keV observed flux assuming a power-law spectrum (PowFlux_pos) (stat.error;stat.max)
   (ALL)e_FPO0 mW/m2 (n) []? The 1-sigma negative uncertainty on the mean 0.3-10keV observed flux assuming a power-law spectrum (PowFlux_neg) (stat.error)
   (ALL)FPU0 (char) mW/m2 The mean 0.3-10keV unabsorbed flux assuming a power-law spectrum (PowUnabsFlux) (phot.flux;em.X-ray)
   (ALL)E_FPU0 (char) mW/m2 The 1-sigma positive uncertainty on the mean 0.3-10keV unabsorbed flux assuming a power-law spectrum (PowUnabsFlux_pos) (stat.error;stat.max)
   (ALL)e_FPU0 (char) mW/m2 The 1-sigma negative uncertainty on the mean 0.3-10keV unabsorbed flux assuming a power-law spectrum (PowUnabsFlux_neg) (stat.error)
   (ALL)ECFO0 mJ/m2/ct (n) The Energy Conversion Factor from 0.3-10keV count-rate to 0.3-10keV observed flux, assuming an APEC spectrum (APECECFO) (arith.factor;phys.energy)
   (ALL)ECFU0 (char) mJ/m2/ct The Energy Conversion Factor from 0.3-10keV count-rate to 0.3-10keV unabsorbed flux, assuming an APEC spectrum (APECECFU) (arith.factor;phys.energy)

ALL cols
    
(n) indicates a possible blank or NULL column(i)indexed column
   (ALL)FAO0 mW/m2 (n) The mean 0.3-10keV observed flux assuming an APEC spectrum (APECFlux) (phot.flux;em.X-ray)
   (ALL)E_FAO0 mW/m2 (n) The 1-sigma positive uncertainty on the mean 0.3-10keV observed flux assuming an APEC spectrum (APECFlux_pos) (stat.error;stat.max)
   (ALL)e_FAO0 mW/m2 (n) []? The 1-sigma negative uncertainty on the mean 0.3-10keV observed flux assuming an APEC spectrum (APECFlux_neg) (stat.error)
   (ALL)FAU0 (char) mW/m2 The mean 0.3-10keV unabsorbed flux assuming an APEC spectrum (APECUnabsFlux) (phot.flux;em.X-ray)
   (ALL)E_FAU0 (char) mW/m2 The 1-sigma positive uncertainty on the mean 0.3-10keV unabsorbed flux assuming an APEC spectrum (APECUnabsFlux_pos) (stat.error;stat.max)
   (ALL)e_FAU0 (char) mW/m2 The 1-sigma negative uncertainty on the mean 0.3-10keV unabsorbed flux assuming an APEC spectrum (APECUnabsFlux_neg) (stat.error)
   (ALL)FpPO0 mW/m2 (n) The peak 0.3-10keV observed flux assuming a power-law spectrum (PowPeakFlux) (phot.flux;em.X-ray)
   (ALL)E_FpPO0 mW/m2 (n) The 1-sigma positive uncertainty on the peak 0.3-10keV observed flux assuming a power-law spectrum (PowPeakFlux_pos) (stat.error;stat.max)
   (ALL)e_FpPO0 mW/m2 (n) []? The 1-sigma negative uncertainty on the peak 0.3-10keV observed flux assuming a power-law spectrum (PowPeakFlux_neg) (stat.error)
   (ALL)FpPU0 (char) mW/m2 The peak 0.3-10keV unabsorbed flux assuming a power-law spectrum (PowPeakUnabsFlux) (phot.flux;em.X-ray)
   (ALL)E_FpPU0 (char) mW/m2 The 1-sigma positive uncertainty on the peak 0.3-10keV unabsorbed flux assuming a power-law spectrum (PowPeakUnabsFlux_pos) (stat.error;stat.max)
   (ALL)e_FpPU0 (char) mW/m2 The 1-sigma negative uncertainty on the peak 0.3-10keV unabsorbed flux assuming a power-law spectrum (PowPeakUnabsFlux_neg) (stat.error)
   (ALL)FpAO0 mW/m2 (n) The peak 0.3-10keV observed flux assuming an APEC spectrum (APECPeakFlux) (phot.flux;em.X-ray)

ALL cols
    
(n) indicates a possible blank or NULL column(i)indexed column
   (ALL)E_FpAO0 mW/m2 (n) The 1-sigma positive uncertainty on the peak 0.3-10keV observed flux assuming an APEC spectrum (APECPeakFlux_pos) (stat.error;stat.max)
   (ALL)e_FpAO0 mW/m2 (n) []? The 1-sigma negative uncertainty on the peak 0.3-10keV observed flux assuming an APEC spectrum (APECPeakFlux_neg) (stat.error)
   (ALL)FpAU0 (char) mW/m2 The peak 0.3-10keV unabsorbed flux assuming an APEC spectrum (APECPeakUnabsFlux) (phot.flux;em.X-ray)
   (ALL)E_FpAU0 (char) mW/m2 The 1-sigma positive uncertainty on the peak 0.3-10keV unabsorbed flux assuming an APEC spectrum (APECPeakUnabsFlux_pos) (stat.error;stat.max)
   (ALL)e_FpAU0 (char) mW/m2 The 1-sigma negative uncertainty on the peak 0.3-10keV unabsorbed flux assuming an APEC spectrum (APECPeakUnabsFlux_neg) (stat.error)
   (ALL)CECFO mJ/m2/ct (n) The Energy Conversion Factor from 0.3-10keV count-rate to 0.3-10keV observed flux, assuming the canned power-law spectrum (FixedPowECFO) (arith.factor;phys.energy)
   (ALL)CECFU mJ/m2/ct (n) The Energy Conversion Factor from 0.3-10keV count-rate to 0.3-10keV unabsorbed flux, assuming the canned power-law spectrum (FixedPowECFU) (arith.factor;phys.energy)
   (ALL)FCOP0 mW/m2 (n) The mean 0.3-10keV observed flux assuming the canned power-law spectrum (FixedPowFlux) (phot.flux;em.X-ray)
   (ALL)E_FCOP0 mW/m2 (n) The 1-sigma positive uncertainty on the mean 0.3-10keV observed flux assuming the canned power-law spectrum (FixedPowFlux_pos) (stat.error;stat.max)
   (ALL)e_FCOP0 mW/m2 (n) []? The 1-sigma negative uncertainty on the mean 0.3-10keV observed flux assuming the canned power-law spectrum (FixedPowFlux_neg) (stat.error)
   (ALL)FCUP0 mW/m2 (n) The mean 0.3-10keV unabsorbed flux assuming the canned power-law spectrum (FixedPowUnabsFlux) (phot.flux;em.X-ray)
   (ALL)E_FCUP0 mW/m2 (n) The 1-sigma positive uncertainty on the mean 0.3-10keV unabsorbed flux assuming the canned power-law spectrum (FixedPowUnabsFlux_pos) (stat.error;stat.max)
   (ALL)e_FCUP0 mW/m2 (n) []? The 1-sigma negative uncertainty on the mean 0.3-10keV unabsorbed flux assuming the canned power-law spectrum (FixedPowUnabsFlux_neg) (stat.error)

ALL cols
    
(n) indicates a possible blank or NULL column(i)indexed column
   (ALL)AECFO mJ/m2/ct (n) The Energy Conversion Factor from 0.3-10keV count-rate to 0.3-10keV observed flux, assuming the canned APEC spectrum (FixedAPECECFO) (arith.factor;phys.energy)
   (ALL)AECFU mJ/m2/ct (n) The Energy Conversion Factor from 0.3-10keV count-rate to 0.3-10keV unabsorbed flux, assuming the canned APEC spectrum (FixedAPECECFU) (arith.factor;phys.energy)
   (ALL)FCAO1 mW/m2 (n) The mean 0.3-10keV observed flux assuming the canned APEC spectrum (FixedAPECFlux) (phot.flux;em.X-ray)
   (ALL)E_FCAO1 mW/m2 (n) The 1-sigma positive uncertainty on the mean 0.3-10keV observed flux assuming the canned APEC spectrum (FixedAPECFlux_pos) (stat.error;stat.max)
   (ALL)e_FCAO1 mW/m2 (n) []? The 1-sigma negative uncertainty on the mean 0.3-10keV observed flux assuming the canned APEC spectrum (FixedAPECFlux_neg) (stat.error)
   (ALL)FCAU1 (char) mW/m2 The mean 0.3-10keV unabsorbed flux assuming the canned APEC spectrum (FixedAPECUnabsFlux) (phot.flux;em.X-ray)
   (ALL)E_FCAU1 (char) mW/m2 The 1-sigma positive uncertainty on the mean 0.3-10keV unabsorbed flux assuming the canned APEC spectrum (FixedAPECUnabsFlux_pos) (stat.error;stat.max)
   (ALL)e_FCAU1 (char) mW/m2 The 1-sigma negative uncertainty on the mean 0.3-10keV unabsorbed flux assuming the canned APEC spectrum (FixedAPECUnabsFlux_neg) (stat.error)
   (ALL)PECFO mJ/m2/ct (n) The Energy Conversion Factor from 0.3-10keV count-rate to 0.3-10keV observed flux, assuming the power-law spectrum interpolated from the HRs (InterpPowECFO) (arith.factor)
   (ALL)PECFU mJ/m2/ct (n) The Energy Conversion Factor from 0.3-10keV count-rate to 0.3-10keV unabsorbed flux, assuming the power-law spectrum interpolated from the HRs (InterpPowECFU) (arith.factor)
   (ALL)NH1H cm-2 (n) The hydrogen column density inferred assuming the power-law spectrum interpolated from the HRs (InterpPowNH) (phys.columnDensity)
   (ALL)E_NH1H cm-2 (n) []? The 1-sigma positive uncertainty on the hydrogen column density inferred assuming the power-law spectrum interpolated from the HRs (InterpPowNH_pos) (stat.error;stat.max)
   (ALL)e_NH1H cm-2 (n) []? The 1-sigma negative uncertainty on the hydrogen column density inferred assuming the power-law spectrum interpolated from the HRs (InterpPowNH_neg) (stat.error)

ALL cols
    
(n) indicates a possible blank or NULL column(i)indexed column
   (ALL)Gam1  (n) The spectral photon index inferred assuming the power-law spectrum interpolated from the HRs (InterpPowGamma) (spect.index)
   (ALL)E_Gam1  (n) []? The 1-sigma positive uncertainty on the spectral photon index inferred assuming the power-law spectrum interpolated from the HRs (InterpPowGamma_pos) (stat.error;stat.max)
   (ALL)e_Gam1  (n) []? The 1-sigma negative uncertainty on the spectral photon index inferred assuming the power-law spectrum interpolated from the HRs (InterpPowGamma_neg) (stat.error)
   (ALL)FIPO1 mW/m2 (n) The mean 0.3-10keV observed flux assuming the power-law spectrum interpolated from the HRs (InterpPowFlux) (phot.flux;em.X-ray)
   (ALL)E_FIPO1 mW/m2 (n) The 1-sigma positive uncertainty on the mean 0.3-10keV observed flux assuming the power-law spectrum interpolated from the HRs (InterpPowFlux_pos) (stat.error;stat.max)
   (ALL)e_FIPO1 mW/m2 (n) []? The 1-sigma negative uncertainty on the mean 0.3-10keV observed flux assuming the power-law spectrum interpolated from the HRs (InterpPowFlux_neg) (stat.error)
   (ALL)FIPU1 mW/m2 (n) The mean 0.3-10keV unabsorbed flux assuming the power-law spectrum interpolated from the HRs (InterpPowUnabsFlux) (phot.flux;em.X-ray)
   (ALL)E_FIPU1 mW/m2 (n) The 1-sigma positive uncertainty on the mean 0.3-10keV unabsorbed flux assuming the power-law spectrum interpolated from the HRs (InterpPowUnabsFlux_pos) (stat.error;stat.max)
   (ALL)e_FIPU1 mW/m2 (n) []? The 1-sigma negative uncertainty on the mean 0.3-10keV unabsorbed flux assuming the power-law spectrum interpolated from the HRs (InterpPowUnabsFlux_neg) (stat.error)
   (ALL)IPECFO mJ/m2/ct (n) The Energy Conversion Factor from 0.3-10keV count-rate to 0.3-10keV observed flux, assuming the APEC spectrum interpolated from the HRs (InterpAPECECFO) (arith.factor;phys.energy)
   (ALL)IPECFU (char) mJ/m2/ct The Energy Conversion Factor from 0.3-10keV count-rate to 0.3-10keV unabsorbed flux, assuming the APEC spectrum interpolated from the HRs (InterpAPECECFU) (arith.factor;phys.energy)
   (ALL)NH2A (char) cm-2 The hydrogen column density inferred assuming the APEC spectrum interpolated from the HRs (InterpAPECNH) (phys.columnDensity)
   (ALL)E_NH2A (char) cm-2 The 1-sigma positive uncertainty on the hydrogen column density inferred assuming the APEC spectrum interpolated from the HRs (InterpAPECNH_pos) (stat.error;stat.max)

ALL cols
    
(n) indicates a possible blank or NULL column(i)indexed column
   (ALL)e_NH2A cm-2 (n) []? The 1-sigma negative uncertainty on the hydrogen column density inferred assuming the APEC spectrum interpolated from the HRs (InterpAPECNH_neg) (stat.error)
   (ALL)kTAH keV (n) The temperature inferred assuming the APEC spectrum interpolated from the HRs (InterpAPECkT) (spect.index)
   (ALL)E_kTAH keV (n) []? The 1-sigma positive uncertainty on the temperature inferred assuming the APEC spectrum interpolated from the HRs (InterpAPECkT_pos) (stat.error;stat.max)
   (ALL)e_kTAH keV (n) []? The 1-sigma negative uncertainty on the temperature inferred assuming the APEC spectrum interpolated from the HRs (InterpAPECkT_neg) (stat.error)
   (ALL)FAIO1 mW/m2 (n) The mean 0.3-10keV observed flux assuming the APEC spectrum interpolated from the HRs (InterpAPECFlux) (phot.flux;em.X-ray)
   (ALL)E_FAIO1 mW/m2 (n) The 1-sigma positive uncertainty on the mean 0.3-10keV observed flux assuming the APEC spectrum interpolated from the HRs (InterpAPECFlux_pos) (stat.error;stat.max)
   (ALL)e_FAIO1 mW/m2 (n) []? The 1-sigma negative uncertainty on the mean 0.3-10keV observed flux assuming the APEC spectrum interpolated from the HRs (InterpAPECFlux_neg) (stat.error)
   (ALL)FAIU1 (char) mW/m2 The mean 0.3-10keV unabsorbed flux assuming the APEC spectrum interpolated from the HRs (InterpAPECUnabsFlux) (phot.flux;em.X-ray)
   (ALL)E_FAIU1 (char) mW/m2 The 1-sigma positive uncertainty on the mean 0.3-10keV unabsorbed flux assuming the APEC spectrum interpolated from the HRs (InterpAPECUnabsFlux_pos) (stat.error;stat.max)
   (ALL)e_FAIU1 (char) mW/m2 The 1-sigma negative uncertainty on the mean 0.3-10keV unabsorbed flux assuming the APEC spectrum interpolated from the HRs (InterpAPECUnabsFlux_neg) (stat.error)
   (ALL)P1  (n) The probability that the HR values of this source could be obtained if the true spectrum is an absorbed power-law (P_pow) (stat.probability)
   (ALL)P2  (n) The probability that the HR values of this source could be obtained if the true spectrum is an APEC (P_APEC) (stat.probability)
   (ALL)FPECFO mJ/m2/ct (n) The Energy Conversion Factor from 0.3-10keV count-rate to 0.3-10keV observed flux, assuming the power-law spectral model fitted to a custom-built spectrum (FittedPowECFO) (phot.flux;em.X-ray)

ALL cols
    
(n) indicates a possible blank or NULL column(i)indexed column
   (ALL)FPECFU (char) mJ/m2/ct The Energy Conversion Factor from 0.3-10keV count-rate to 0.3-10keV unabsorbed flux, assuming the power-law spectral model fitted to a custom-built spectrum (FittedPowECFU) (phot.flux;em.X-ray)
   (ALL)NH2C (char) cm-2 The hydrogen column density inferred assuming the power-law spectral model fitted to a custom-built spectrum (FittedPowNH) (phys.columnDensity)
   (ALL)E_NH2C (char) cm-2 The 1-sigma positive uncertainty on the hydrogen column density inferred assuming the power-law spectral model fitted to a custom-built spectrum (FittedPowNH_pos) (Note 8)   (stat.error;stat.max)
   (ALL)e_NH2C (char) cm-2 The 1-sigma negative uncertainty on the hydrogen column density inferred assuming the power-law spectral model fitted to a custom-built spectrum (FittedPowNH_neg) (Note 8)   (stat.error)
   (ALL)Gamma  (n) The spectral photon index inferred assuming the power-law spectral model fitted to a custom-built spectrum (FittedPowGamma) (spect.index)
   (ALL)E_Gamma  (n) []? The 1-sigma positive uncertainty on the spectral photon index inferred assuming the power-law spectral model fitted to a custom-built spectrum (FittedPowGamma_pos) (8) (Note 8)   (stat.error;stat.max)
   (ALL)e_Gamma  (n) []? The 1-sigma negative uncertainty on the spectral photon index inferred assuming the power-law spectral model fitted to a custom-built spectrum (FittedPowGamma_neg) (8) (Note 8)   (stat.error)
   (ALL)FPCO0 mW/m2 (n) The mean 0.3-10keV observed flux assuming the power-law spectral model fitted to a custom-built spectrum (FittedPowFlux) (phot.flux;em.X-ray)
   (ALL)E_FPCO0 mW/m2 (n) The 1-sigma positive uncertainty on the mean 0.3-10keV observed flux assuming the power-law spectral model fitted to a custom-built spectrum (FittedPowFlux_pos) (Note 8)   (stat.error;stat.max)
   (ALL)e_FPCO0 mW/m2 (n) []? The 1-sigma negative uncertainty on the mean 0.3-10keV observed flux assuming the power-law spectral model fitted to a custom-built spectrum (FittedPowFlux_neg) (8) (Note 8)   (stat.error)
   (ALL)FPCU0 (char) mW/m2 The mean 0.3-10keV unabsorbed flux assuming the power-law spectral model fitted to a custom-built spectrum (FittedPowUnabsFlux) (phot.flux;em.X-ray)
   (ALL)E_FPCU0 (char) mW/m2 The 1-sigma positive uncertainty on the mean 0.3-10keV unabsorbed flux assuming the power-law spectral model fitted to a custom-built spectrum (FittedPowUnabsFlux_pos) (Note 8)   (stat.error;stat.max)
   (ALL)e_FPCU0 (char) mW/m2 The 1-sigma negative uncertainty on the mean 0.3-10keV unabsorbed flux assuming the power-law spectral model fitted to a custom-built spectrum (FittedPowUnabsFlux_neg) (Note 8)   (stat.error)

ALL cols
    
(n) indicates a possible blank or NULL column(i)indexed column
   (ALL)Cstat  (n) The C-statistic from the power-law spectral fit to the custom-built spectrum (FittedPowCstat) (meta.code)
   (ALL)DOF  (n) The number of degrees of freedom in the power-law spectral fit to the custom-built spectrum (FittedPowDOF) (stat.fit.dof)
   (ALL)chi2r  (n) The Churazov-weighted reduced chi2 from the power-law spectral fit to the custom-built spectrum (FittedPowReducedChi2) (stat.fit.chi2)
   (ALL)ACECFO mJ/m2/ct (n) The Energy Conversion Factor from 0.3-10keV count-rate to 0.3-10keV observed flux, assuming the APEC spectral model fitted to a custom-built spectrum (FittedAPECECFO) (arith.factor;phys.energy)
   (ALL)ACECFU (char) mJ/m2/ct The Energy Conversion Factor from 0.3-10keV count-rate to 0.3-10keV unabsorbed flux, assuming the APEC spectral model fitted to a custom-built spectrum (FittedAPECECFU) (arith.factor;phys.energy)
   (ALL)NH2AC (char) cm-2 The hydrogen column density inferred assuming the APEC spectral model fitted to a custom-built spectrum (FittedAPECNH) (phys.columnDensity)
   (ALL)E_NH2AC (char) cm-2 The 1-sigma positive uncertainty on the hydrogen column density inferred assuming the APEC spectral model fitted to a custom-built spectrum (FittedAPECNH_pos) (Note 8)   (stat.error;stat.max)
   (ALL)e_NH2AC (char) cm-2 The 1-sigma negative uncertainty on the hydrogen column density inferred assuming the APEC spectral model fitted to a custom-built spectrum (FittedAPECNH_neg) (Note 8)   (stat.error)
   (ALL)kTAC keV (n) The temperature inferred assuming the APEC spectral model fitted to a custom-built spectrum (FittedAPECkT) (spect.index)
   (ALL)E_kTAC keV (n) []? The 1-sigma positive uncertainty on the temperature inferred assuming the APEC spectral model fitted to a custom-built spectrum (FittedAPECkT_pos) (8) (Note 8)   (stat.error;stat.max)
   (ALL)e_kTAC keV (n) []? The 1-sigma negative uncertainty on the temperature inferred assuming the APEC spectral model fitted to a custom-built spectrum (FittedAPECkT_neg) (8) (Note 8)   (stat.error)
   (ALL)FACO0 mW/m2 (n) The mean 0.3-10keV observed flux assuming the APEC spectral model fitted to a custom-built spectrum (FittedAPECFlux) (phot.flux;em.X-ray)
   (ALL)E_FACO0 mW/m2 (n) The 1-sigma positive uncertainty on the mean 0.3-10keV observed flux assuming the APEC spectral model fitted to a custom-built spectrum (FittedAPECFlux_pos) (Note 8)   (stat.error;stat.max)

ALL cols
    
(n) indicates a possible blank or NULL column(i)indexed column
   (ALL)e_FACO0 mW/m2 (n) []? The 1-sigma negative uncertainty on the mean 0.3-10keV observed flux assuming the APEC spectral model fitted to a custom-built spectrum (FittedAPECFlux_neg) (8) (Note 8)   (stat.error)
   (ALL)FACU0 (char) mW/m2 The mean 0.3-10keV unabsorbed flux assuming the APEC spectral model fitted to a custom-built spectrum (FittedAPECUnabsFlux) (phot.flux;em.X-ray)
   (ALL)E_FACU0 (char) mW/m2 The 1-sigma positive uncertainty on the mean 0.3-10keV unabsorbed flux assuming the APEC spectral model fitted to a custom-built spectrum (FittedAPECUnabsFlux_pos) (Note 8)   (stat.error;stat.max)
   (ALL)e_FACU0 (char) mW/m2 The 1-sigma negative uncertainty on the mean 0.3-10keV unabsorbed flux assuming the APEC spectral model fitted to a custom-built spectrum (FittedAPECUnabsFlux_neg) (Note 8)   (stat.error)
   (ALL)CstatA  (n) The C-statistic from the APEC spectral fit to the custom-built spectrum (FittedAPECCstat) (stat.fit.param)
   (ALL)DOFA  (n) The number of degrees of freedom in the APEC spectral fit to the custom-built spectrum (FittedAPECDOF) (stat.fit.dof)
   (ALL)chi2rA  (n) The Churazov-weighted reduced chi2 from the APEC spectral fit to the custom-built spectrum (FittedAPECReducedChi2) (stat.fit.chi2)
   (ALL)HasSpec  (n) Whether a custom-built spectrum was created for this source (HasSpec) (meta.code)
   (ALL)Next  (n) The number of external sources found to agree spatially with this one at the 3-sigma level (NumExternalMatches) (meta.number)
   (ALL)Next2  (n) The number of external sources found to agree spatially with this one at the 3-sigma level, excluding 2MASS, USNO-B1 and ALLWISE matches (NumExternalMatches_slim) (meta.number)
   (ALL)ROSHRI  (n) Whether the sources is spatially within 3 sigma of a source in the Rosat HRI catalogue (Cat. IX/28) (MatchInROSHRI) (meta.note)
   (ALL)2RXS  (n) Whether the sources is spatially within 3 sigma of a source in the 2RXS catalogue (Cat. J/A+A/588/A103) (MatchIn2RXS) (meta.note)
   (ALL)3XMMDR8  (n) Whether the sources is spatially within 3 sigma of a source in the 3XMM-DR8 catalogue (Cat. IX/55) (MatchIn3XMMDR8) (meta.note)

ALL cols
    
(n) indicates a possible blank or NULL column(i)indexed column
   (ALL)3XMMStack  (n) Whether the sources is spatially within 3 sigma of a source in the 3XMM-DR7s (stacked) catalogue (Cat. IX/56) (MatchIn3XMM_Stack) (meta.note)
   (ALL)XMMSL2  (n) Whether the sources is spatially within 3 sigma of a source in the XMMSL2 catalogue (Cat. IX/53) (MatchInXMMSL2) (meta.note)
   (ALL)SwiftFT  (n) Whether the sources is spatially within 3 sigma of a source in the SwiftFT catalogue (Cat. J/A+A/528/A122) (MatchInSwiftFT) (meta.note)
   (ALL)1SWXRT  (n) Whether the sources is spatially within 3 sigma of a source in the 1SWXRT catalogue (Cat. J/A+A/551/A142) (MatchIn1SWXRT) (meta.note)
   (ALL)XRTGRB  (n) Whether the sources is spatially within 3 sigma of an XRT GRB afterglow (MatchInXRTGRB) (meta.note)
   (ALL)SDSSQSO  (n) Whether the sources is spatially within 3 sigma of a source in the SDSS QSO DR14 catalogue (MatchInSDSSQSO) (meta.note)
   (ALL)2MASS  (n) Whether the sources is spatially within 3 sigma of a source in the 2MASS catalogue (Cat. II/246) (MatchIn2MASS) (meta.note)
   (ALL)USNOB1  (n) Whether the sources is spatially within 3 sigma of a source in the USNO-B1 catalogue (Cat. I/284) (MatchInUSNOB1) (meta.note)
   (ALL)2CSC  (n) Whether the sources is spatially within 3 sigma of a source in the 2CSC catalogue (MatchIn2CSC) (meta.note)
   (ALL)1SXPS  (n) Whether the sources is spatially within 3 sigma of a source in the 1SXPS catalogue (Cat. IX/43) (MatchIn1SXPS) (meta.note)
   (ALL)ALLWISE  (n) Whether the sources is spatially within 3 sigma of a source in the ALLWISE catalogue (Cat. II/328) (MatchInALLWISE) (meta.note)

ALL cols
    
(n) indicates a possible blank or NULL column(i)indexed column
Adapt form
Display your selection only Reset to default columns
usage  Display UCD1+    UCD1  
.errorfile=/tmp/VR240647.err (2026-08-06T15:22:59)
-3
-source=IX/58
-ref=VIZ6a74a6d33ac07
elapse time 1

Options: wopt=0, optS=0, onote=0, opt1=8, opos=0


Contents of error file (/tmp/VR240647.err):
....vizier, Version 7.5.8
CDSportal=http://cdsportal.cds.unistra.fr/StoreVizierData.html
COCAT=130.79.128.31
COCATPORT=1801
CONTEXT_DOCUMENT_ROOT=/srv/httpd/local/cgi/
CONTEXT_PREFIX=/local/viz-bin/
Content=text/html
DOCKER=yes
DOCUMENT_ROOT=/srv/httpd/Pages/
GATEWAY_INTERFACE=CGI/1.1
GLUDIR=/srv/glu
GLUHOME=/srv/glu
GROUP=root
HOME=/srv/httpd
HOST=3cc090d0de86
HOSTTYPE=x86_64-linux
HTTP_ACCEPT=*/*
HTTP_ACCEPT_ENCODING=gzip, br, zstd, deflate
HTTP_CONNECTION=Keep-Alive
HTTP_HOST=localhost:8081
HTTP_USER_AGENT=Mozilla/5.0 AppleWebKit/537.36 (KHTML, like Gecko; compatible; ClaudeBot/1.0; +claudebot@anthropic.com)
HTTP_X_FORWARDED_FOR=216.73.217.111, 127.0.0.1
HTTP_X_FORWARDED_HOST=tapvizier1.u-strasbg.fr
HTTP_X_FORWARDED_SERVER=tapvizier1.cds.unistra.fr
LC_ALL=C
LD_LIBRARY_PATH=/srv/httpd/../lib:/srv/lib:/usr/local/lib:/usr/lib
LOGNAME=root
MACHTYPE=x86_64
MAX_UPLOADS=100000
METADB=metaviz@TAPVIZIER1 asu asu4VizieR
MOCCMD=mocset query /srv/httpd/mocs/mocset10.bin cone -p 5 
NEWS=/VizieR/+news.htx
OSTYPE=linux
PATH=/srv/httpd/bin:/usr/local/bin:/usr/bin:/bin
PATH_INFO=/
PWD=/srv/httpd/cgi
QUERY_STRING=-source=IX%2F58
REMOTE_ADDR=172.19.0.1
REMOTE_PORT=54304
REQUEST_METHOD=GET
REQUEST_SCHEME=http
REQUEST_URI=/local/viz-bin/VizieR-3?-source=IX%2F58
SCRIPT_FILENAME=/srv/httpd/local/cgi/VizieR-3
SCRIPT_NAME=/local/viz-bin/VizieR-3
SERVER_ADDR=172.19.0.3
SERVER_ADMIN=gilles.landais@astro.u-strasbg.fr
SERVER_NAME=localhost
SERVER_PORT=8081
SERVER_PROTOCOL=HTTP/1.1
SERVER_SIGNATURE=
SERVER_SOFTWARE=Apache/2.4.66 (Unix)
SESAME_SERVER=glu
SHLVL=1
USER=root
VENDOR=unknown
VIZCLONE_STATISTICS=no
Vaccess=*
Vprog=/srv/httpd/bin/vizier
Vprog_ls=-rwxr-xr-x 1 root root 974128 Aug  5 14:41 /srv/httpd/bin/vizier
Vroot=/srv/httpd

################################################################
....(in): -source=IX/58
################################################################

....Trying '/srv/httpd/interfaces' => OK
....Trying '/srv/httpd/interfaces' => 3
....db1_interfaces(/srv/httpd/interfaces)
----db1_open(metaviz@TAPVIZIER1) gives: 0
----Open server: tapvizier1.cds.unistra.fr, port 5434 (type postgres base vizier)
----db1_query(0 'metaviz@TAPVIZIER1'):
[1786029779]   Select      METAcol.name as name, METAcol.dbname as dbname, METAcol.length as length      from METAcol, METAtab      where METAcol.catid=0 and METAtab.catid=0 and METAcol.tabid = METAtab.tabid      and METAtab.name = 'METAdba'
----db1_query(0 'metaviz@TAPVIZIER1'):
[1786029779]   Select      METAcol.name as name, METAcol.dbname as dbname, METAcol.length as length      from METAcol, METAtab      where METAcol.catid=0 and METAtab.catid=0 and METAcol.tabid = METAtab.tabid      and METAtab.name = 'METAtab'
----db1_query(0 'metaviz@TAPVIZIER1'):
[1786029779]   Select      METAcol.name as name, METAcol.dbname as dbname, METAcol.length as length      from METAcol, METAtab      where METAcol.catid=0 and METAtab.catid=0 and METAcol.tabid = METAtab.tabid      and METAtab.name = 'METAcol'
----db1_query(0 'metaviz@TAPVIZIER1'):
[1786029779]   Select      METAcol.name as name, METAcol.dbname as dbname, METAcol.length as length      from METAcol, METAtab      where METAcol.catid=0 and METAtab.catid=0 and METAcol.tabid = METAtab.tabid      and METAtab.name = 'METAcat'
----db1_query(0 'metaviz@TAPVIZIER1'):
[1786029779]   Select      METAcol.name as name, METAcol.dbname as dbname, METAcol.length as length      from METAcol, METAtab      where METAcol.catid=0 and METAtab.catid=0 and METAcol.tabid = METAtab.tabid      and METAtab.name = 'METAmor'
----db1_query(0 'metaviz@TAPVIZIER1'):
[1786029779]   Select      METAcol.name as name, METAcol.dbname as dbname, METAcol.length as length      from METAcol, METAtab      where METAcol.catid=0 and METAtab.catid=0 and METAcol.tabid = METAtab.tabid      and METAtab.name = 'METAdic'
----db1_query(0 'metaviz@TAPVIZIER1'):
[1786029779]   Select      METAcol.name as name, METAcol.dbname as dbname, METAcol.length as length      from METAcol, METAtab      where METAcol.catid=0 and METAtab.catid=0 and METAcol.tabid = METAtab.tabid      and METAtab.name = 'METAdig'
----db1_query(0 'metaviz@TAPVIZIER1'):
[1786029779]   Select      METAcol.name as name, METAcol.dbname as dbname, METAcol.length as length      from METAcol, METAtab      where METAcol.catid=0 and METAtab.catid=0 and METAcol.tabid = METAtab.tabid      and METAtab.name = 'METAfam'
----db1_query(0 'metaviz@TAPVIZIER1'):
[1786029779]   Select      METAcol.name as name, METAcol.dbname as dbname, METAcol.length as length      from METAcol, METAtab      where METAcol.catid=0 and METAtab.catid=0 and METAcol.tabid = METAtab.tabid      and METAtab.name = 'METAucd'
----db1_query(0 'metaviz@TAPVIZIER1'):
[1786029779]   Select      METAcol.name as name, METAcol.dbname as dbname, METAcol.length as length      from METAcol, METAtab      where METAcol.catid=0 and METAtab.catid=0 and METAcol.tabid = METAtab.tabid      and METAtab.name = 'METAauth'
----db1_query(0 'metaviz@TAPVIZIER1'):
[1786029779]   Select MAX(dbaid) as nlogins from METAdba
----db1_reset(0 'metaviz@TAPVIZIER1')
----db1_query(0 'metaviz@TAPVIZIER1'):
[1786029779]   Select MAX(famid) as mUCD1 from METAfam
----db1_reset(0 'metaviz@TAPVIZIER1')
----db1_query(0 'metaviz@TAPVIZIER1'):
[1786029779]   Select hstid, flag from METAhst where name='3cc090d0de86.astro.unistra.fr'
----db1_query(0 'metaviz@TAPVIZIER1'):
[1786029779]   Select authid, name From METAauth where authid=0
----db1_query(0 'metaviz@TAPVIZIER1'):
[1786029779]   Select name, dbname, catid, tabid, flags, equinox, epoch, explain, dbaid, cooframe, release, records, notid, comment, status, cooprec, morexplain From METAtab where name = 'IX/58' and catid in (select catid from METAcat where catid=METAtab.catid and (authid=0))
----db1_query(0 'metaviz@TAPVIZIER1'):
[1786029779]   Select name, catid, title, kslot, explain, status, popu, authid, bibcode, flags, doi, orcid, authors From METAcat where catid=9058 and (authid=0)
----db1_reset(0 'metaviz@TAPVIZIER1')
----db1_query(0 'metaviz@TAPVIZIER1'):
[1786029779]   Select name, dbname, catid, tabid, flags, equinox, epoch, explain, dbaid, cooframe, release, records, notid, comment, status, cooprec, morexplain From METAtab Where catid=9058 order by tabid
----db1_query(0 'metaviz@TAPVIZIER1'):
[1786029779]   select login from METAdba where dbaid=39
----db1_reset(0 'metaviz@TAPVIZIER1')
----db1_query(0 'metaviz@TAPVIZIER1'):
[1786029779]   select k.catid,k.kwdid from METAkwd k where catid=9058 and ((-1*kwdid)<(select min(kwdno_min*1) from METAkwcat where name in ('Astronomy')) or  (-1*kwdid)>(select max(kwdno_max*1) from METAkwcat where name in ('Astronomy'))) order by catid
----db1_query(0 'metaviz@TAPVIZIER1'):
[1786029779]   Select name, dbname, catid, tabid, flags, equinox, epoch, explain, dbaid, cooframe, release, records, notid, comment, status, cooprec, morexplain From METAtab where name = 'METAkwdef' and catid in (select catid from METAcat where catid=METAtab.catid and (authid=0))
----db1_reset(0 'metaviz@TAPVIZIER1')
----db1_query(0 'metaviz@TAPVIZIER1'):
[1786029779]   Select catid, morid, text From METAmor where catid=0 order by morid
----db1_query(0 'metaviz@TAPVIZIER1'):
[1786029779]   Select name, dbname, catid, tabid, famid, type, dbtype, length, flags, fmt, unit, dbunit, explain, colid, notid, morid, ucdid, vounit, morexplain From METAcol where catid=0 and  tabid=11 order by colid
----db1_query(0 'metaviz@TAPVIZIER1'):
[1786029779]   Select      METAcol.name as name, METAcol.dbname as dbname, METAcol.length as length      from METAcol, METAtab      where METAcol.catid=0 and METAtab.catid=0 and METAcol.tabid = METAtab.tabid      and METAtab.name = 'METAfilter'
----db1_query(0 'metaviz@TAPVIZIER1'):
[1786029779]   Select      METAcol.name as name, METAcol.dbname as dbname, METAcol.length as length      from METAcol, METAtab      where METAcol.catid=0 and METAtab.catid=0 and METAcol.tabid = METAtab.tabid      and METAtab.name = 'METAsed'
----db1_query(0 'metaviz@TAPVIZIER1'):
[1786029779]   Select colid, photid, fltrid, photid1, fltrid1 From METAsed where catid=0 and tabid=11
----db1_query(0 'metaviz@TAPVIZIER1'):
[1786029779]   select login from METAdba where login like 'large_tables%'
----db1_reset(0 'metaviz@TAPVIZIER1')
----db1_query(0 'metaviz@TAPVIZIER1'):
[1786029779]   Select name, kwdid, kwdkm, kwdno, Nk From METAkwdef
#...meta_close(1): retrieved 147/0 tuples [tested=147]
----db1_query(0 'metaviz@TAPVIZIER1'):
[1786029779]   Select name, dbname, catid, tabid, famid, type, dbtype, length, flags, fmt, unit, dbunit, explain, colid, notid, morid, ucdid, vounit, morexplain From METAcol where catid=9058 order by catid,tabid,colid
----db1_query(0 'metaviz@TAPVIZIER1'):
[1786029779]   Select catid, morid, text From METAmor where catid=9058 order by morid
----db1_query(0 'metaviz@TAPVIZIER1'):
[1786029779]   Select colid, photid, fltrid, photid1, fltrid1 From METAsed where catid=9058 and tabid=1
----db1_query(0 'metaviz@TAPVIZIER1'):
[1786029779]   Select colid, photid, fltrid, photid1, fltrid1 From METAsed where catid=9058 and tabid=2

====Contents of more_defs:
(nil)
====argColors='(nil)'

....DisplayFile(/srv/httpd/VizieR/+menu.htx) ****Non-existant file****
----db1_query(0 'metaviz@TAPVIZIER1'):
[1786029779]   Select name, dbname, catid, tabid, famid, type, dbtype, length, flags, fmt, unit, dbunit, explain, colid, notid, morid, ucdid, vounit, morexplain From METAcol where catid=9058 and  tabid=1 order by colid
----db1_query(0 'metaviz@TAPVIZIER1'):
[1786029779]   Select colid, photid, fltrid, photid1, fltrid1 From METAsed where catid=9058 and tabid=1
----db1_query(0 'metaviz@TAPVIZIER1'):
[1786029779]   Select name, dbname, catid, tabid, flags, equinox, epoch, explain, dbaid, cooframe, release, records, notid, comment, status, cooprec, morexplain From METAtab where name = 'METAtime' and catid in (select catid from METAcat where catid=METAtab.catid and (authid=0))
----db1_reset(0 'metaviz@TAPVIZIER1')
----db1_query(0 'metaviz@TAPVIZIER1'):
[1786029779]   Select catid, morid, text From METAmor where catid=0 order by morid
----db1_query(0 'metaviz@TAPVIZIER1'):
[1786029779]   Select name, dbname, catid, tabid, famid, type, dbtype, length, flags, fmt, unit, dbunit, explain, colid, notid, morid, ucdid, vounit, morexplain From METAcol where catid=0 and  tabid=52 order by colid
----db1_query(0 'metaviz@TAPVIZIER1'):
[1786029779]   Select colid, photid, fltrid, photid1, fltrid1 From METAsed where catid=0 and tabid=52
----db1_query(0 'metaviz@TAPVIZIER1'):
[1786029779]   Select catid, tabid, colid, time_syst_id, scale_name, frame_name, time_systematic_err, name, description, time_offset, time_uncertainty, time_representation, id, flags From METAtime where catid=9058 and tabid=1
#...meta_close(1): retrieved 0/1000 tuples [tested=0]
----db1_query(0 'metaviz@TAPVIZIER1'):
[1786029779]   Select catid, tabid, colid, time_syst_id, scale_name, frame_name, time_systematic_err, name, description, time_offset, time_uncertainty, time_representation, id, flags From METAtime where catid=9058 and tabid=1
#...meta_close(1): retrieved 0/1000 tuples [tested=0]
----db1_query(0 'metaviz@TAPVIZIER1'):
[1786029779]   Select catid, morid, text From METAmor where catid=9058 order by morid
----db1_query(0 'metaviz@TAPVIZIER1'):
[1786029779]   Select name, dbname, catid, tabid, famid, type, dbtype, length, flags, fmt, unit, dbunit, explain, colid, notid, morid, ucdid, vounit, morexplain From METAcol where catid=9058 and  tabid=2 order by colid
----db1_query(0 'metaviz@TAPVIZIER1'):
[1786029779]   Select colid, photid, fltrid, photid1, fltrid1 From METAsed where catid=9058 and tabid=2
----db1_query(0 'metaviz@TAPVIZIER1'):
[1786029779]   Select catid, tabid, colid, time_syst_id, scale_name, frame_name, time_systematic_err, name, description, time_offset, time_uncertainty, time_representation, id, flags From METAtime where catid=9058 and tabid=2
#...meta_close(1): retrieved 0/1000 tuples [tested=0]
----db1_query(0 'metaviz@TAPVIZIER1'):
[1786029779]   Select catid, tabid, colid, time_syst_id, scale_name, frame_name, time_systematic_err, name, description, time_offset, time_uncertainty, time_representation, id, flags From METAtime where catid=9058 and tabid=2
#...meta_close(1): retrieved 0/1000 tuples [tested=0]
++++status=3 0
----db1_query(0 'metaviz@TAPVIZIER1'):
[1786029779]   SELECT catid FROM METAcat WHERE name='9058'
----db1_query(0 'metaviz@TAPVIZIER1'):
[1786029779]   Select name, catid, title, kslot, explain, status, popu, authid, bibcode, flags, doi, orcid, authors From METAcat where catid=9058 and (authid=0)
----db1_reset(0 'metaviz@TAPVIZIER1')
----db1_query(0 'metaviz@TAPVIZIER1'):
[1786029779]   Select name, dbname, catid, tabid, flags, equinox, epoch, explain, dbaid, cooframe, release, records, notid, comment, status, cooprec, morexplain From METAtab Where catid=9058 order by tabid
----db1_query(0 'metaviz@TAPVIZIER1'):
[1786029779]   Select idori, kwdid, name, explain From METAorigin
----db1_query(0 'metaviz@TAPVIZIER1'):
[1786029779]   Select ucdid, name From METAucd where ucdid>=0
----db1_exec(0 'metaviz@TAPVIZIER1'):
[1786029779]    Update METAhit set etime=839344979,  Ncalls = Ncalls+1 where catid=9058 and hstid=-1 and btime=838906200
------------(1 records affected)
----db1_exec(0 'metaviz@TAPVIZIER1'):
[1786029779]    UPDATE METAstat set nlocal=nlocal+1, tlocal=839344979 Where phase=3 and catid=9058
------------(1 records affected)
----db1_exec(0 'metaviz@TAPVIZIER1'):
[1786029779]    Update METAhit set etime=839344979,  N2list = N2list+2 where catid=9058 and hstid=-1 and btime=838906200
------------(1 records affected)
----db1_exec(0 'metaviz@TAPVIZIER1'):
[1786029779]    Update METAhit set etime=839344979,  N2list = N2list+2 where catid=9058 and hstid=-1 and btime=838906200
------------(1 records affected)
----db1_exec(0 'metaviz@TAPVIZIER1'):
[1786029779]    UPDATE METAstat set nlocal=nlocal+1, tlocal=839344979 Where phase=3 and catid=9058
------------(1 records affected)
----db1_query(0 'metaviz@TAPVIZIER1'):
[1786029779]   Select famid, name From METAfam where famid>=0
....show_tuple: show_status = (26, 434, 0, 0, 0)
====Tuple 'IX/58' from 2/0 tables:
    #9058.1 'IX/58/2sxps' 230/240 columns
    #9058.2 'IX/58/2sxpscle' 230/240 columns
[00000003] col#000 v000 OA002 IX/58/2sxps*recno           
[00000003] col#001 v000 O0003 IX/58/2sxps*2SXPS           
[00000003] col#002 v004 O4003 IX/58/2sxps*IAUName         
[00000003] col#003 v311 O1023 IX/58/2sxps*RAJ2000         
[00000003] col#004 v011 O1023 IX/58/2sxps*DEJ2000         
[00000003] col#005 v001 O0040 IX/58/2sxps*Err90           
[00000003] col#006 v000 O0040 IX/58/2sxps*A               
[00000003] col#007 v301 O0000 IX/58/2sxps*GLON            
[00000003] col#008 v001 O0000 IX/58/2sxps*GLAT            
[00000003] col#009 v001 O0000 IX/58/2sxps*OffAxis         
[00000003] col#010 v001 O0000 IX/58/2sxps*DNN             
[00000003] col#011 v001 O0000 IX/58/2sxps*DNNOK           
[00000003] col#012 v000 O0000 IX/58/2sxps*t.exp           
[00000003] col#013 v020 O0080 IX/58/2sxps*t.start1        
[00000003] col#014 v020 O0080 IX/58/2sxps*t.stop1         
[00000003] col#015 v000 O0000 IX/58/2sxps*time.start1     
[00000003] col#016 v000 O0000 IX/58/2sxps*time.stop1      
[00000003] col#017 v020 O0080 IX/58/2sxps*t.start2        
[00000003] col#018 v020 O0080 IX/58/2sxps*t.stop2         
[00000003] col#019 v000 O0000 IX/58/2sxps*time.start2     
[00000003] col#020 v000 O0000 IX/58/2sxps*time.stop2      
[00000003] col#021 v020 O0080 IX/58/2sxps*t.start3        
[00000003] col#022 v020 O0080 IX/58/2sxps*t.stop3         
[00000003] col#023 v000 O0000 IX/58/2sxps*time.start3     
[00000003] col#024 v000 O0000 IX/58/2sxps*time.stop3      
[00000003] col#025 v000 O0040 IX/58/2sxps*NObs            
[00000003] col#026 v000 O0040 IX/58/2sxps*NBlind          
[00000003] col#027 v000 O0040 IX/58/2sxps*NDet            
[00000003] col#028 v000 O0000 IX/58/2sxps*NBest           
[00000003] col#029 v000 O0040 IX/58/2sxps*F0              
[00000003] col#030 v000 O0040 IX/58/2sxps*F1              
[00000003] col#031 v000 O0040 IX/58/2sxps*F2              
[00000003] col#032 v000 O0040 IX/58/2sxps*F3              
[00000003] col#033 v000 O00C3 IX/58/2sxps*Det             
[00000003] col#034 v000 O00C0 IX/58/2sxps*FField          
[00000003] col#035 v000 O00C0 IX/58/2sxps*Det0            
[00000003] col#036 v000 O00C0 IX/58/2sxps*Det1            
[00000003] col#037 v000 O00C0 IX/58/2sxps*Det2            
[00000003] col#038 v000 O00C0 IX/58/2sxps*Det3            
[00000003] col#039 v001 O0000 IX/58/2sxps*Warning         
[00000003] col#040 v000 O0040 IX/58/2sxps*DetSLW          
[00000003] col#041 v000 O0040 IX/58/2sxps*DetNBSW         
[00000003] col#042 v000 O0040 IX/58/2sxps*Dup             
[00000003] col#043 v004 O4040 IX/58/2sxps*ONames          
[00000003] col#044 v001 O0083 IX/58/2sxps*CR0             
[00000003] col#045 v001 O0083 IX/58/2sxps*E_CR0           
[00000003] col#046 v001 O0083 IX/58/2sxps*e_CR0           
[00000003] col#047 v001 O0083 IX/58/2sxps*HR1             
[00000003] col#048 v001 O0080 IX/58/2sxps*E_HR1           
[00000003] col#049 v001 O0080 IX/58/2sxps*e_HR1           
[00000003] col#050 v001 O0083 IX/58/2sxps*HR2             
[00000003] col#051 v001 O0080 IX/58/2sxps*E_HR2           
[00000003] col#052 v001 O0080 IX/58/2sxps*e_HR2           
[00000003] col#053 v001 O0080 IX/58/2sxps*CR1             
[00000003] col#054 v001 O0080 IX/58/2sxps*E_CR1           
[00000003] col#055 v001 O0080 IX/58/2sxps*e_CR1           
[00000003] col#056 v001 O0080 IX/58/2sxps*CR2             
[00000003] col#057 v001 O0080 IX/58/2sxps*E_CR2           
[00000003] col#058 v001 O0080 IX/58/2sxps*e_CR2           
[00000003] col#059 v001 O0080 IX/58/2sxps*CR3             
[00000003] col#060 v001 O0080 IX/58/2sxps*E_CR3           
[00000003] col#061 v001 O0080 IX/58/2sxps*e_CR3           
[00000003] col#062 v000 O0080 IX/58/2sxps*Ct0             
[00000003] col#063 v000 O0080 IX/58/2sxps*Ct1             
[00000003] col#064 v000 O0080 IX/58/2sxps*Ct2             
[00000003] col#065 v000 O0080 IX/58/2sxps*Ct3             
[00000003] col#066 v001 O0080 IX/58/2sxps*bgCt0           
[00000003] col#067 v001 O0080 IX/58/2sxps*bgCt1           
[00000003] col#068 v001 O0080 IX/58/2sxps*bgCt2           
[00000003] col#069 v001 O0080 IX/58/2sxps*bgCt3           
[00000003] col#070 v001 O0080 IX/58/2sxps*CF0             
[00000003] col#071 v001 O0080 IX/58/2sxps*CF1             
[00000003] col#072 v001 O0080 IX/58/2sxps*CF2             
[00000003] col#073 v001 O0080 IX/58/2sxps*CF3             
[00000003] col#074 v001 O0080 IX/58/2sxps*FUL0            
[00000003] col#075 v001 O0080 IX/58/2sxps*FUL1            
[00000003] col#076 v001 O0080 IX/58/2sxps*FUL2            
[00000003] col#077 v001 O0080 IX/58/2sxps*FUL3            
[00000003] col#078 v001 O0080 IX/58/2sxps*PCR0            
[00000003] col#079 v001 O0080 IX/58/2sxps*E_PCR0          
[00000003] col#080 v001 O0080 IX/58/2sxps*e_PCR0          
[00000003] col#081 v001 O0080 IX/58/2sxps*PCR1            
[00000003] col#082 v001 O0080 IX/58/2sxps*E_PCR1          
[00000003] col#083 v001 O0080 IX/58/2sxps*e_PCR1          
[00000003] col#084 v001 O0080 IX/58/2sxps*PCR2            
[00000003] col#085 v001 O0080 IX/58/2sxps*E_PCR2          
[00000003] col#086 v001 O0080 IX/58/2sxps*e_PCR2          
[00000003] col#087 v001 O0080 IX/58/2sxps*PCR3            
[00000003] col#088 v001 O0080 IX/58/2sxps*E_PCR3          
[00000003] col#089 v001 O0080 IX/58/2sxps*e_PCR3          
[00000003] col#090 v001 O0000 IX/58/2sxps*NHg             
[00000003] col#091 v001 O0083 IX/58/2sxps*PcstS0          
[00000003] col#092 v001 O0080 IX/58/2sxps*PcstS1          
[00000003] col#093 v001 O0080 IX/58/2sxps*PcstS2          
[00000003] col#094 v001 O0080 IX/58/2sxps*PcstS3          
[00000003] col#095 v001 O0080 IX/58/2sxps*PcstSHR1        
[00000003] col#096 v001 O0080 IX/58/2sxps*PcstSHR2        
[00000003] col#097 v001 O0080 IX/58/2sxps*Pcst0           
[00000003] col#098 v001 O0080 IX/58/2sxps*Pcst1           
[00000003] col#099 v001 O0080 IX/58/2sxps*Pcst2           
[00000003] col#100 v001 O0080 IX/58/2sxps*Pcst3           
[00000003] col#101 v001 O0080 IX/58/2sxps*PcstHR1         
[00000003] col#102 v001 O0080 IX/58/2sxps*PcstHR2         
[00000003] col#103 v000 O00C0 IX/58/2sxps*Pow             
[00000003] col#104 v000 O00C0 IX/58/2sxps*APEC            
[00000003] col#105 v001 O0080 IX/58/2sxps*CFO0            
[00000003] col#106 v004 O4000 IX/58/2sxps*CFU0            
[00000003] col#107 v001 O0083 IX/58/2sxps*FPO0            
[00000003] col#108 v001 O0080 IX/58/2sxps*E_FPO0          
[00000003] col#109 v001 O0080 IX/58/2sxps*e_FPO0          
[00000003] col#110 v004 O4003 IX/58/2sxps*FPU0            
[00000003] col#111 v004 O4000 IX/58/2sxps*E_FPU0          
[00000003] col#112 v004 O4000 IX/58/2sxps*e_FPU0          
[00000003] col#113 v001 O0080 IX/58/2sxps*ECFO0           
[00000003] col#114 v004 O4000 IX/58/2sxps*ECFU0           
[00000003] col#115 v001 O0080 IX/58/2sxps*FAO0            
[00000003] col#116 v001 O0080 IX/58/2sxps*E_FAO0          
[00000003] col#117 v001 O0080 IX/58/2sxps*e_FAO0          
[00000003] col#118 v004 O4000 IX/58/2sxps*FAU0            
[00000003] col#119 v004 O4000 IX/58/2sxps*E_FAU0          
[00000003] col#120 v004 O4000 IX/58/2sxps*e_FAU0          
[00000003] col#121 v001 O0080 IX/58/2sxps*FpPO0           
[00000003] col#122 v001 O0080 IX/58/2sxps*E_FpPO0         
[00000003] col#123 v001 O0080 IX/58/2sxps*e_FpPO0         
[00000003] col#124 v004 O4000 IX/58/2sxps*FpPU0           
[00000003] col#125 v004 O4000 IX/58/2sxps*E_FpPU0         
[00000003] col#126 v004 O4000 IX/58/2sxps*e_FpPU0         
[00000003] col#127 v001 O0080 IX/58/2sxps*FpAO0           
[00000003] col#128 v001 O0080 IX/58/2sxps*E_FpAO0         
[00000003] col#129 v001 O0080 IX/58/2sxps*e_FpAO0         
[00000003] col#130 v004 O4000 IX/58/2sxps*FpAU0           
[00000003] col#131 v004 O4000 IX/58/2sxps*E_FpAU0         
[00000003] col#132 v004 O4000 IX/58/2sxps*e_FpAU0         
[00000003] col#133 v001 O0080 IX/58/2sxps*CECFO           
[00000003] col#134 v001 O0080 IX/58/2sxps*CECFU           
[00000003] col#135 v001 O0080 IX/58/2sxps*FCOP0           
[00000003] col#136 v001 O0080 IX/58/2sxps*E_FCOP0         
[00000003] col#137 v001 O0080 IX/58/2sxps*e_FCOP0         
[00000003] col#138 v001 O0080 IX/58/2sxps*FCUP0           
[00000003] col#139 v001 O0080 IX/58/2sxps*E_FCUP0         
[00000003] col#140 v001 O0080 IX/58/2sxps*e_FCUP0         
[00000003] col#141 v001 O0080 IX/58/2sxps*AECFO           
[00000003] col#142 v001 O0080 IX/58/2sxps*AECFU           
[00000003] col#143 v001 O0080 IX/58/2sxps*FCAO1           
[00000003] col#144 v001 O0080 IX/58/2sxps*E_FCAO1         
[00000003] col#145 v001 O0080 IX/58/2sxps*e_FCAO1         
[00000003] col#146 v004 O4000 IX/58/2sxps*FCAU1           
[00000003] col#147 v004 O4000 IX/58/2sxps*E_FCAU1         
[00000003] col#148 v004 O4000 IX/58/2sxps*e_FCAU1         
[00000003] col#149 v001 O0080 IX/58/2sxps*PECFO           
[00000003] col#150 v001 O0080 IX/58/2sxps*PECFU           
[00000003] col#151 v001 O0080 IX/58/2sxps*NH1H            
[00000003] col#152 v001 O0080 IX/58/2sxps*E_NH1H          
[00000003] col#153 v001 O0080 IX/58/2sxps*e_NH1H          
[00000003] col#154 v001 O0080 IX/58/2sxps*Gam1            
[00000003] col#155 v001 O0080 IX/58/2sxps*E_Gam1          
[00000003] col#156 v001 O0080 IX/58/2sxps*e_Gam1          
[00000003] col#157 v001 O0080 IX/58/2sxps*FIPO1           
[00000003] col#158 v001 O0080 IX/58/2sxps*E_FIPO1         
[00000003] col#159 v001 O0080 IX/58/2sxps*e_FIPO1         
[00000003] col#160 v001 O0080 IX/58/2sxps*FIPU1           
[00000003] col#161 v001 O0080 IX/58/2sxps*E_FIPU1         
[00000003] col#162 v001 O0080 IX/58/2sxps*e_FIPU1         
[00000003] col#163 v001 O0080 IX/58/2sxps*IPECFO          
[00000003] col#164 v004 O4000 IX/58/2sxps*IPECFU          
[00000003] col#165 v004 O4000 IX/58/2sxps*NH2A            
[00000003] col#166 v004 O4000 IX/58/2sxps*E_NH2A          
[00000003] col#167 v001 O0080 IX/58/2sxps*e_NH2A          
[00000003] col#168 v001 O0080 IX/58/2sxps*kTAH            
[00000003] col#169 v001 O0080 IX/58/2sxps*E_kTAH          
[00000003] col#170 v001 O0080 IX/58/2sxps*e_kTAH          
[00000003] col#171 v001 O0080 IX/58/2sxps*FAIO1           
[00000003] col#172 v001 O0080 IX/58/2sxps*E_FAIO1         
[00000003] col#173 v001 O0080 IX/58/2sxps*e_FAIO1         
[00000003] col#174 v004 O4000 IX/58/2sxps*FAIU1           
[00000003] col#175 v004 O4000 IX/58/2sxps*E_FAIU1         
[00000003] col#176 v004 O4000 IX/58/2sxps*e_FAIU1         
[00000003] col#177 v001 O00C0 IX/58/2sxps*P1              
[00000003] col#178 v001 O00C0 IX/58/2sxps*P2              
[00000003] col#179 v001 O0080 IX/58/2sxps*FPECFO          
[00000003] col#180 v004 O4000 IX/58/2sxps*FPECFU          
[00000003] col#181 v004 O4000 IX/58/2sxps*NH2C            
[00000003] col#182 v004 O4000 IX/58/2sxps*E_NH2C          
[00000003] col#183 v004 O4000 IX/58/2sxps*e_NH2C          
[00000003] col#184 v001 O0080 IX/58/2sxps*Gamma           
[00000003] col#185 v001 O0080 IX/58/2sxps*E_Gamma         
[00000003] col#186 v001 O0080 IX/58/2sxps*e_Gamma         
[00000003] col#187 v001 O0080 IX/58/2sxps*FPCO0           
[00000003] col#188 v001 O0080 IX/58/2sxps*E_FPCO0         
[00000003] col#189 v001 O0080 IX/58/2sxps*e_FPCO0         
[00000003] col#190 v004 O4000 IX/58/2sxps*FPCU0           
[00000003] col#191 v004 O4000 IX/58/2sxps*E_FPCU0         
[00000003] col#192 v004 O4000 IX/58/2sxps*e_FPCU0         
[00000003] col#193 v001 O0080 IX/58/2sxps*Cstat           
[00000003] col#194 v000 O00C0 IX/58/2sxps*DOF             
[00000003] col#195 v001 O0080 IX/58/2sxps*chi2r           
[00000003] col#196 v001 O0080 IX/58/2sxps*ACECFO          
[00000003] col#197 v004 O4000 IX/58/2sxps*ACECFU          
[00000003] col#198 v004 O4000 IX/58/2sxps*NH2AC           
[00000003] col#199 v004 O4000 IX/58/2sxps*E_NH2AC         
[00000003] col#200 v004 O4000 IX/58/2sxps*e_NH2AC         
[00000003] col#201 v001 O0080 IX/58/2sxps*kTAC            
[00000003] col#202 v001 O0080 IX/58/2sxps*E_kTAC          
[00000003] col#203 v001 O0080 IX/58/2sxps*e_kTAC          
[00000003] col#204 v001 O0080 IX/58/2sxps*FACO0           
[00000003] col#205 v001 O0080 IX/58/2sxps*E_FACO0         
[00000003] col#206 v001 O0080 IX/58/2sxps*e_FACO0         
[00000003] col#207 v004 O4000 IX/58/2sxps*FACU0           
[00000003] col#208 v004 O4000 IX/58/2sxps*E_FACU0         
[00000003] col#209 v004 O4000 IX/58/2sxps*e_FACU0         
[00000003] col#210 v001 O0080 IX/58/2sxps*CstatA          
[00000003] col#211 v000 O00C0 IX/58/2sxps*DOFA            
[00000003] col#212 v001 O0080 IX/58/2sxps*chi2rA          
[00000003] col#213 v000 O00C0 IX/58/2sxps*HasSpec         
[00000003] col#214 v000 O00C0 IX/58/2sxps*Next            
[00000003] col#215 v000 O00C0 IX/58/2sxps*Next2           
[00000003] col#216 v000 O00C0 IX/58/2sxps*ROSHRI          
[00000003] col#217 v000 O00C0 IX/58/2sxps*2RXS            
[00000003] col#218 v000 O00C0 IX/58/2sxps*3XMMDR8         
[00000003] col#219 v000 O00C0 IX/58/2sxps*3XMMStack       
[00000003] col#220 v000 O00C0 IX/58/2sxps*XMMSL2          
[00000003] col#221 v000 O00C0 IX/58/2sxps*SwiftFT         
[00000003] col#222 v000 O00C0 IX/58/2sxps*1SWXRT          
[00000003] col#223 v000 O00C0 IX/58/2sxps*XRTGRB          
[00000003] col#224 v000 O00C0 IX/58/2sxps*SDSSQSO         
[00000003] col#225 v000 O00C0 IX/58/2sxps*2MASS           
[00000003] col#226 v000 O00C0 IX/58/2sxps*USNOB1          
[00000003] col#227 v000 O00C0 IX/58/2sxps*2CSC            
[00000003] col#228 v000 O00C0 IX/58/2sxps*1SXPS           
[00000003] col#229 v000 O00C0 IX/58/2sxps*ALLWISE         
[00000003] col#000 v000 OA002 IX/58/2sxpscle*recno           
[00000003] col#001 v000 O0003 IX/58/2sxpscle*2SXPS           
[00000003] col#002 v004 O4003 IX/58/2sxpscle*IAUName         
[00000003] col#003 v311 O1023 IX/58/2sxpscle*RAJ2000         
[00000003] col#004 v011 O1023 IX/58/2sxpscle*DEJ2000         
[00000003] col#005 v001 O0040 IX/58/2sxpscle*Err90           
[00000003] col#006 v000 O0040 IX/58/2sxpscle*A               
[00000003] col#007 v301 O0000 IX/58/2sxpscle*GLON            
[00000003] col#008 v001 O0000 IX/58/2sxpscle*GLAT            
[00000003] col#009 v001 O0000 IX/58/2sxpscle*OffAxis         
[00000003] col#010 v001 O0000 IX/58/2sxpscle*DNN             
[00000003] col#011 v001 O0000 IX/58/2sxpscle*DNNOK           
[00000003] col#012 v000 O0000 IX/58/2sxpscle*t.exp           
[00000003] col#013 v020 O0080 IX/58/2sxpscle*t.start1        
[00000003] col#014 v020 O0080 IX/58/2sxpscle*t.stop1         
[00000003] col#015 v000 O0000 IX/58/2sxpscle*time.start1     
[00000003] col#016 v000 O0000 IX/58/2sxpscle*time.stop1      
[00000003] col#017 v020 O0080 IX/58/2sxpscle*t.start2        
[00000003] col#018 v020 O0080 IX/58/2sxpscle*t.stop2         
[00000003] col#019 v000 O0000 IX/58/2sxpscle*time.start2     
[00000003] col#020 v000 O0000 IX/58/2sxpscle*time.stop2      
[00000003] col#021 v020 O0080 IX/58/2sxpscle*t.start3        
[00000003] col#022 v020 O0080 IX/58/2sxpscle*t.stop3         
[00000003] col#023 v000 O0000 IX/58/2sxpscle*time.start3     
[00000003] col#024 v000 O0000 IX/58/2sxpscle*time.stop3      
[00000003] col#025 v000 O0040 IX/58/2sxpscle*NObs            
[00000003] col#026 v000 O0040 IX/58/2sxpscle*NBlind          
[00000003] col#027 v000 O0040 IX/58/2sxpscle*NDet            
[00000003] col#028 v000 O0000 IX/58/2sxpscle*NBest           
[00000003] col#029 v000 O0040 IX/58/2sxpscle*F0              
[00000003] col#030 v000 O0040 IX/58/2sxpscle*F1              
[00000003] col#031 v000 O0040 IX/58/2sxpscle*F2              
[00000003] col#032 v000 O0040 IX/58/2sxpscle*F3              
[00000003] col#033 v000 O00C3 IX/58/2sxpscle*Det             
[00000003] col#034 v000 O00C0 IX/58/2sxpscle*FField          
[00000003] col#035 v000 O00C0 IX/58/2sxpscle*Det0            
[00000003] col#036 v000 O00C0 IX/58/2sxpscle*Det1            
[00000003] col#037 v000 O00C0 IX/58/2sxpscle*Det2            
[00000003] col#038 v000 O00C0 IX/58/2sxpscle*Det3            
[00000003] col#039 v001 O0000 IX/58/2sxpscle*Warning         
[00000003] col#040 v000 O0040 IX/58/2sxpscle*DetSLW          
[00000003] col#041 v000 O0040 IX/58/2sxpscle*DetNBSW         
[00000003] col#042 v000 O0040 IX/58/2sxpscle*Dup             
[00000003] col#043 v004 O4040 IX/58/2sxpscle*ONames          
[00000003] col#044 v001 O0083 IX/58/2sxpscle*CR0             
[00000003] col#045 v001 O0083 IX/58/2sxpscle*E_CR0           
[00000003] col#046 v001 O0083 IX/58/2sxpscle*e_CR0           
[00000003] col#047 v001 O0083 IX/58/2sxpscle*HR1             
[00000003] col#048 v001 O0080 IX/58/2sxpscle*E_HR1           
[00000003] col#049 v001 O0080 IX/58/2sxpscle*e_HR1           
[00000003] col#050 v001 O0083 IX/58/2sxpscle*HR2             
[00000003] col#051 v001 O0080 IX/58/2sxpscle*E_HR2           
[00000003] col#052 v001 O0080 IX/58/2sxpscle*e_HR2           
[00000003] col#053 v001 O0080 IX/58/2sxpscle*CR1             
[00000003] col#054 v001 O0080 IX/58/2sxpscle*E_CR1           
[00000003] col#055 v001 O0080 IX/58/2sxpscle*e_CR1           
[00000003] col#056 v001 O0080 IX/58/2sxpscle*CR2             
[00000003] col#057 v001 O0080 IX/58/2sxpscle*E_CR2           
[00000003] col#058 v001 O0080 IX/58/2sxpscle*e_CR2           
[00000003] col#059 v001 O0080 IX/58/2sxpscle*CR3             
[00000003] col#060 v001 O0080 IX/58/2sxpscle*E_CR3           
[00000003] col#061 v001 O0080 IX/58/2sxpscle*e_CR3           
[00000003] col#062 v000 O0080 IX/58/2sxpscle*Ct0             
[00000003] col#063 v000 O0080 IX/58/2sxpscle*Ct1             
[00000003] col#064 v000 O0080 IX/58/2sxpscle*Ct2             
[00000003] col#065 v000 O0080 IX/58/2sxpscle*Ct3             
[00000003] col#066 v001 O0080 IX/58/2sxpscle*bgCt0           
[00000003] col#067 v001 O0080 IX/58/2sxpscle*bgCt1           
[00000003] col#068 v001 O0080 IX/58/2sxpscle*bgCt2           
[00000003] col#069 v001 O0080 IX/58/2sxpscle*bgCt3           
[00000003] col#070 v001 O0080 IX/58/2sxpscle*CF0             
[00000003] col#071 v001 O0080 IX/58/2sxpscle*CF1             
[00000003] col#072 v001 O0080 IX/58/2sxpscle*CF2             
[00000003] col#073 v001 O0080 IX/58/2sxpscle*CF3             
[00000003] col#074 v001 O0080 IX/58/2sxpscle*FUL0            
[00000003] col#075 v001 O0080 IX/58/2sxpscle*FUL1            
[00000003] col#076 v001 O0080 IX/58/2sxpscle*FUL2            
[00000003] col#077 v001 O0080 IX/58/2sxpscle*FUL3            
[00000003] col#078 v001 O0080 IX/58/2sxpscle*PCR0            
[00000003] col#079 v001 O0080 IX/58/2sxpscle*E_PCR0          
[00000003] col#080 v001 O0080 IX/58/2sxpscle*e_PCR0          
[00000003] col#081 v001 O0080 IX/58/2sxpscle*PCR1            
[00000003] col#082 v001 O0080 IX/58/2sxpscle*E_PCR1          
[00000003] col#083 v001 O0080 IX/58/2sxpscle*e_PCR1          
[00000003] col#084 v001 O0080 IX/58/2sxpscle*PCR2            
[00000003] col#085 v001 O0080 IX/58/2sxpscle*E_PCR2          
[00000003] col#086 v001 O0080 IX/58/2sxpscle*e_PCR2          
[00000003] col#087 v001 O0080 IX/58/2sxpscle*PCR3            
[00000003] col#088 v001 O0080 IX/58/2sxpscle*E_PCR3          
[00000003] col#089 v001 O0080 IX/58/2sxpscle*e_PCR3          
[00000003] col#090 v001 O0000 IX/58/2sxpscle*NHg             
[00000003] col#091 v001 O0083 IX/58/2sxpscle*PcstS0          
[00000003] col#092 v001 O0080 IX/58/2sxpscle*PcstS1          
[00000003] col#093 v001 O0080 IX/58/2sxpscle*PcstS2          
[00000003] col#094 v001 O0080 IX/58/2sxpscle*PcstS3          
[00000003] col#095 v001 O0080 IX/58/2sxpscle*PcstSHR1        
[00000003] col#096 v001 O0080 IX/58/2sxpscle*PcstSHR2        
[00000003] col#097 v001 O0080 IX/58/2sxpscle*Pcst0           
[00000003] col#098 v001 O0080 IX/58/2sxpscle*Pcst1           
[00000003] col#099 v001 O0080 IX/58/2sxpscle*Pcst2           
[00000003] col#100 v001 O0080 IX/58/2sxpscle*Pcst3           
[00000003] col#101 v001 O0080 IX/58/2sxpscle*PcstHR1         
[00000003] col#102 v001 O0080 IX/58/2sxpscle*PcstHR2         
[00000003] col#103 v000 O00C0 IX/58/2sxpscle*Pow             
[00000003] col#104 v000 O00C0 IX/58/2sxpscle*APEC            
[00000003] col#105 v001 O0080 IX/58/2sxpscle*CFO0            
[00000003] col#106 v004 O4000 IX/58/2sxpscle*CFU0            
[00000003] col#107 v001 O0083 IX/58/2sxpscle*FPO0            
[00000003] col#108 v001 O0080 IX/58/2sxpscle*E_FPO0          
[00000003] col#109 v001 O0080 IX/58/2sxpscle*e_FPO0          
[00000003] col#110 v004 O4003 IX/58/2sxpscle*FPU0            
[00000003] col#111 v004 O4000 IX/58/2sxpscle*E_FPU0          
[00000003] col#112 v004 O4000 IX/58/2sxpscle*e_FPU0          
[00000003] col#113 v001 O0080 IX/58/2sxpscle*ECFO0           
[00000003] col#114 v004 O4000 IX/58/2sxpscle*ECFU0           
[00000003] col#115 v001 O0080 IX/58/2sxpscle*FAO0            
[00000003] col#116 v001 O0080 IX/58/2sxpscle*E_FAO0          
[00000003] col#117 v001 O0080 IX/58/2sxpscle*e_FAO0          
[00000003] col#118 v004 O4000 IX/58/2sxpscle*FAU0            
[00000003] col#119 v004 O4000 IX/58/2sxpscle*E_FAU0          
[00000003] col#120 v004 O4000 IX/58/2sxpscle*e_FAU0          
[00000003] col#121 v001 O0080 IX/58/2sxpscle*FpPO0           
[00000003] col#122 v001 O0080 IX/58/2sxpscle*E_FpPO0         
[00000003] col#123 v001 O0080 IX/58/2sxpscle*e_FpPO0         
[00000003] col#124 v004 O4000 IX/58/2sxpscle*FpPU0           
[00000003] col#125 v004 O4000 IX/58/2sxpscle*E_FpPU0         
[00000003] col#126 v004 O4000 IX/58/2sxpscle*e_FpPU0         
[00000003] col#127 v001 O0080 IX/58/2sxpscle*FpAO0           
[00000003] col#128 v001 O0080 IX/58/2sxpscle*E_FpAO0         
[00000003] col#129 v001 O0080 IX/58/2sxpscle*e_FpAO0         
[00000003] col#130 v004 O4000 IX/58/2sxpscle*FpAU0           
[00000003] col#131 v004 O4000 IX/58/2sxpscle*E_FpAU0         
[00000003] col#132 v004 O4000 IX/58/2sxpscle*e_FpAU0         
[00000003] col#133 v001 O0080 IX/58/2sxpscle*CECFO           
[00000003] col#134 v001 O0080 IX/58/2sxpscle*CECFU           
[00000003] col#135 v001 O0080 IX/58/2sxpscle*FCOP0           
[00000003] col#136 v001 O0080 IX/58/2sxpscle*E_FCOP0         
[00000003] col#137 v001 O0080 IX/58/2sxpscle*e_FCOP0         
[00000003] col#138 v001 O0080 IX/58/2sxpscle*FCUP0           
[00000003] col#139 v001 O0080 IX/58/2sxpscle*E_FCUP0         
[00000003] col#140 v001 O0080 IX/58/2sxpscle*e_FCUP0         
[00000003] col#141 v001 O0080 IX/58/2sxpscle*AECFO           
[00000003] col#142 v001 O0080 IX/58/2sxpscle*AECFU           
[00000003] col#143 v001 O0080 IX/58/2sxpscle*FCAO1           
[00000003] col#144 v001 O0080 IX/58/2sxpscle*E_FCAO1         
[00000003] col#145 v001 O0080 IX/58/2sxpscle*e_FCAO1         
[00000003] col#146 v004 O4000 IX/58/2sxpscle*FCAU1           
[00000003] col#147 v004 O4000 IX/58/2sxpscle*E_FCAU1         
[00000003] col#148 v004 O4000 IX/58/2sxpscle*e_FCAU1         
[00000003] col#149 v001 O0080 IX/58/2sxpscle*PECFO           
[00000003] col#150 v001 O0080 IX/58/2sxpscle*PECFU           
[00000003] col#151 v001 O0080 IX/58/2sxpscle*NH1H            
[00000003] col#152 v001 O0080 IX/58/2sxpscle*E_NH1H          
[00000003] col#153 v001 O0080 IX/58/2sxpscle*e_NH1H          
[00000003] col#154 v001 O0080 IX/58/2sxpscle*Gam1            
[00000003] col#155 v001 O0080 IX/58/2sxpscle*E_Gam1          
[00000003] col#156 v001 O0080 IX/58/2sxpscle*e_Gam1          
[00000003] col#157 v001 O0080 IX/58/2sxpscle*FIPO1           
[00000003] col#158 v001 O0080 IX/58/2sxpscle*E_FIPO1         
[00000003] col#159 v001 O0080 IX/58/2sxpscle*e_FIPO1         
[00000003] col#160 v001 O0080 IX/58/2sxpscle*FIPU1           
[00000003] col#161 v001 O0080 IX/58/2sxpscle*E_FIPU1         
[00000003] col#162 v001 O0080 IX/58/2sxpscle*e_FIPU1         
[00000003] col#163 v001 O0080 IX/58/2sxpscle*IPECFO          
[00000003] col#164 v004 O4000 IX/58/2sxpscle*IPECFU          
[00000003] col#165 v004 O4000 IX/58/2sxpscle*NH2A            
[00000003] col#166 v004 O4000 IX/58/2sxpscle*E_NH2A          
[00000003] col#167 v001 O0080 IX/58/2sxpscle*e_NH2A          
[00000003] col#168 v001 O0080 IX/58/2sxpscle*kTAH            
[00000003] col#169 v001 O0080 IX/58/2sxpscle*E_kTAH          
[00000003] col#170 v001 O0080 IX/58/2sxpscle*e_kTAH          
[00000003] col#171 v001 O0080 IX/58/2sxpscle*FAIO1           
[00000003] col#172 v001 O0080 IX/58/2sxpscle*E_FAIO1         
[00000003] col#173 v001 O0080 IX/58/2sxpscle*e_FAIO1         
[00000003] col#174 v004 O4000 IX/58/2sxpscle*FAIU1           
[00000003] col#175 v004 O4000 IX/58/2sxpscle*E_FAIU1         
[00000003] col#176 v004 O4000 IX/58/2sxpscle*e_FAIU1         
[00000003] col#177 v001 O00C0 IX/58/2sxpscle*P1              
[00000003] col#178 v001 O00C0 IX/58/2sxpscle*P2              
[00000003] col#179 v001 O0080 IX/58/2sxpscle*FPECFO          
[00000003] col#180 v004 O4000 IX/58/2sxpscle*FPECFU          
[00000003] col#181 v004 O4000 IX/58/2sxpscle*NH2C            
[00000003] col#182 v004 O4000 IX/58/2sxpscle*E_NH2C          
[00000003] col#183 v004 O4000 IX/58/2sxpscle*e_NH2C          
[00000003] col#184 v001 O0080 IX/58/2sxpscle*Gamma           
[00000003] col#185 v001 O0080 IX/58/2sxpscle*E_Gamma         
[00000003] col#186 v001 O0080 IX/58/2sxpscle*e_Gamma         
[00000003] col#187 v001 O0080 IX/58/2sxpscle*FPCO0           
[00000003] col#188 v001 O0080 IX/58/2sxpscle*E_FPCO0         
[00000003] col#189 v001 O0080 IX/58/2sxpscle*e_FPCO0         
[00000003] col#190 v004 O4000 IX/58/2sxpscle*FPCU0           
[00000003] col#191 v004 O4000 IX/58/2sxpscle*E_FPCU0         
[00000003] col#192 v004 O4000 IX/58/2sxpscle*e_FPCU0         
[00000003] col#193 v001 O0080 IX/58/2sxpscle*Cstat           
[00000003] col#194 v000 O00C0 IX/58/2sxpscle*DOF             
[00000003] col#195 v001 O0080 IX/58/2sxpscle*chi2r           
[00000003] col#196 v001 O0080 IX/58/2sxpscle*ACECFO          
[00000003] col#197 v004 O4000 IX/58/2sxpscle*ACECFU          
[00000003] col#198 v004 O4000 IX/58/2sxpscle*NH2AC           
[00000003] col#199 v004 O4000 IX/58/2sxpscle*E_NH2AC         
[00000003] col#200 v004 O4000 IX/58/2sxpscle*e_NH2AC         
[00000003] col#201 v001 O0080 IX/58/2sxpscle*kTAC            
[00000003] col#202 v001 O0080 IX/58/2sxpscle*E_kTAC          
[00000003] col#203 v001 O0080 IX/58/2sxpscle*e_kTAC          
[00000003] col#204 v001 O0080 IX/58/2sxpscle*FACO0           
[00000003] col#205 v001 O0080 IX/58/2sxpscle*E_FACO0         
[00000003] col#206 v001 O0080 IX/58/2sxpscle*e_FACO0         
[00000003] col#207 v004 O4000 IX/58/2sxpscle*FACU0           
[00000003] col#208 v004 O4000 IX/58/2sxpscle*E_FACU0         
[00000003] col#209 v004 O4000 IX/58/2sxpscle*e_FACU0         
[00000003] col#210 v001 O0080 IX/58/2sxpscle*CstatA          
[00000003] col#211 v000 O00C0 IX/58/2sxpscle*DOFA            
[00000003] col#212 v001 O0080 IX/58/2sxpscle*chi2rA          
[00000003] col#213 v000 O00C0 IX/58/2sxpscle*HasSpec         
[00000003] col#214 v000 O00C0 IX/58/2sxpscle*Next            
[00000003] col#215 v000 O00C0 IX/58/2sxpscle*Next2           
[00000003] col#216 v000 O00C0 IX/58/2sxpscle*ROSHRI          
[00000003] col#217 v000 O00C0 IX/58/2sxpscle*2RXS            
[00000003] col#218 v000 O00C0 IX/58/2sxpscle*3XMMDR8         
[00000003] col#219 v000 O00C0 IX/58/2sxpscle*3XMMStack       
[00000003] col#220 v000 O00C0 IX/58/2sxpscle*XMMSL2          
[00000003] col#221 v000 O00C0 IX/58/2sxpscle*SwiftFT         
[00000003] col#222 v000 O00C0 IX/58/2sxpscle*1SWXRT          
[00000003] col#223 v000 O00C0 IX/58/2sxpscle*XRTGRB          
[00000003] col#224 v000 O00C0 IX/58/2sxpscle*SDSSQSO         
[00000003] col#225 v000 O00C0 IX/58/2sxpscle*2MASS           
[00000003] col#226 v000 O00C0 IX/58/2sxpscle*USNOB1          
[00000003] col#227 v000 O00C0 IX/58/2sxpscle*2CSC            
[00000003] col#228 v000 O00C0 IX/58/2sxpscle*1SXPS           
[00000003] col#229 v000 O00C0 IX/58/2sxpscle*ALLWISE         

----db1_query(0 'metaviz@TAPVIZIER1'):
[1786029779]   Select ucdid, name, class, explain From METAucd where ucdid=82
----db1_reset(0 'metaviz@TAPVIZIER1')
----db1_query(0 'metaviz@TAPVIZIER1'):
[1786029779]   Select famid, name, explain From METAfam where famid=1243
----db1_reset(0 'metaviz@TAPVIZIER1')
----db1_query(0 'metaviz@TAPVIZIER1'):
[1786029779]   Select ucdid, name, class, explain From METAucd where ucdid=74
----db1_reset(0 'metaviz@TAPVIZIER1')
----db1_query(0 'metaviz@TAPVIZIER1'):
[1786029779]   Select ucdid, name, class, explain From METAucd where ucdid=1
----db1_reset(0 'metaviz@TAPVIZIER1')
----db1_query(0 'metaviz@TAPVIZIER1'):
[1786029779]   Select famid, name, explain From METAfam where famid=179
----db1_reset(0 'metaviz@TAPVIZIER1')
----db1_query(0 'metaviz@TAPVIZIER1'):
[1786029779]   Select famid, name, explain From METAfam where famid=156
----db1_reset(0 'metaviz@TAPVIZIER1')
----db1_query(0 'metaviz@TAPVIZIER1'):
[1786029779]   Select ucdid, name, class, explain From METAucd where ucdid=249
----db1_reset(0 'metaviz@TAPVIZIER1')
----db1_query(0 'metaviz@TAPVIZIER1'):
[1786029779]   Select famid, name, explain From METAfam where famid=1165
----db1_reset(0 'metaviz@TAPVIZIER1')
----db1_query(0 'metaviz@TAPVIZIER1'):
[1786029779]   Select ucdid, name, class, explain From METAucd where ucdid=248
----db1_reset(0 'metaviz@TAPVIZIER1')
----db1_query(0 'metaviz@TAPVIZIER1'):
[1786029779]   Select famid, name, explain From METAfam where famid=1135
----db1_reset(0 'metaviz@TAPVIZIER1')
----db1_query(0 'metaviz@TAPVIZIER1'):
[1786029779]   Select ucdid, name, class, explain From METAucd where ucdid=348
----db1_reset(0 'metaviz@TAPVIZIER1')
----db1_query(0 'metaviz@TAPVIZIER1'):
[1786029779]   Select famid, name, explain From METAfam where famid=120
----db1_reset(0 'metaviz@TAPVIZIER1')
----db1_query(0 'metaviz@TAPVIZIER1'):
[1786029779]   Select ucdid, name, class, explain From METAucd where ucdid=83
----db1_reset(0 'metaviz@TAPVIZIER1')
----db1_query(0 'metaviz@TAPVIZIER1'):
[1786029779]   Select ucdid, name, class, explain From METAucd where ucdid=251
----db1_reset(0 'metaviz@TAPVIZIER1')
----db1_query(0 'metaviz@TAPVIZIER1'):
[1786029779]   Select famid, name, explain From METAfam where famid=1255
----db1_reset(0 'metaviz@TAPVIZIER1')
----db1_query(0 'metaviz@TAPVIZIER1'):
[1786029779]   Select ucdid, name, class, explain From METAucd where ucdid=256
----db1_reset(0 'metaviz@TAPVIZIER1')
----db1_query(0 'metaviz@TAPVIZIER1'):
[1786029779]   Select famid, name, explain From METAfam where famid=1172
----db1_reset(0 'metaviz@TAPVIZIER1')
----db1_query(0 'metaviz@TAPVIZIER1'):
[1786029779]   Select ucdid, name, class, explain From METAucd where ucdid=255
----db1_reset(0 'metaviz@TAPVIZIER1')
----db1_query(0 'metaviz@TAPVIZIER1'):
[1786029779]   Select famid, name, explain From METAfam where famid=1171
----db1_reset(0 'metaviz@TAPVIZIER1')
----db1_query(0 'metaviz@TAPVIZIER1'):
[1786029779]   Select ucdid, name, class, explain From METAucd where ucdid=228
----db1_reset(0 'metaviz@TAPVIZIER1')
----db1_query(0 'metaviz@TAPVIZIER1'):
[1786029779]   Select ucdid, name, class, explain From METAucd where ucdid=359
----db1_reset(0 'metaviz@TAPVIZIER1')
----db1_query(0 'metaviz@TAPVIZIER1'):
[1786029779]   Select famid, name, explain From METAfam where famid=1110
----db1_reset(0 'metaviz@TAPVIZIER1')
----db1_query(0 'metaviz@TAPVIZIER1'):
[1786029779]   Select ucdid, name, class, explain From METAucd where ucdid=372
----db1_reset(0 'metaviz@TAPVIZIER1')
----db1_query(0 'metaviz@TAPVIZIER1'):
[1786029779]   Select famid, name, explain From METAfam where famid=1370
----db1_reset(0 'metaviz@TAPVIZIER1')
----db1_query(0 'metaviz@TAPVIZIER1'):
[1786029779]   Select ucdid, name, class, explain From METAucd where ucdid=370
----db1_reset(0 'metaviz@TAPVIZIER1')
----db1_query(0 'metaviz@TAPVIZIER1'):
[1786029780]   Select famid, name, explain From METAfam where famid=1363
----db1_reset(0 'metaviz@TAPVIZIER1')
----db1_query(0 'metaviz@TAPVIZIER1'):
[1786029780]   Select ucdid, name, class, explain From METAucd where ucdid=81
----db1_reset(0 'metaviz@TAPVIZIER1')
----db1_query(0 'metaviz@TAPVIZIER1'):
[1786029780]   Select famid, name, explain From METAfam where famid=314
----db1_reset(0 'metaviz@TAPVIZIER1')
----db1_query(0 'metaviz@TAPVIZIER1'):
[1786029780]   Select ucdid, name, class, explain From METAucd where ucdid=62
----db1_reset(0 'metaviz@TAPVIZIER1')
----db1_query(0 'metaviz@TAPVIZIER1'):
[1786029780]   Select famid, name, explain From METAfam where famid=105
----db1_reset(0 'metaviz@TAPVIZIER1')
----db1_query(0 'metaviz@TAPVIZIER1'):
[1786029780]   Select ucdid, name, class, explain From METAucd where ucdid=64
----db1_reset(0 'metaviz@TAPVIZIER1')
----db1_query(0 'metaviz@TAPVIZIER1'):
[1786029780]   Select ucdid, name, class, explain From METAucd where ucdid=170
----db1_reset(0 'metaviz@TAPVIZIER1')
----db1_query(0 'metaviz@TAPVIZIER1'):
[1786029780]   Select ucdid, name, class, explain From METAucd where ucdid=68
----db1_reset(0 'metaviz@TAPVIZIER1')
----db1_query(0 'metaviz@TAPVIZIER1'):
[1786029780]   Select famid, name, explain From METAfam where famid=109
----db1_reset(0 'metaviz@TAPVIZIER1')
----db1_query(0 'metaviz@TAPVIZIER1'):
[1786029780]   Select ucdid, name, class, explain From METAucd where ucdid=104
----db1_reset(0 'metaviz@TAPVIZIER1')
----db1_query(0 'metaviz@TAPVIZIER1'):
[1786029780]   Select ucdid, name, class, explain From METAucd where ucdid=945
----db1_reset(0 'metaviz@TAPVIZIER1')
----db1_query(0 'metaviz@TAPVIZIER1'):
[1786029780]   Select famid, name, explain From METAfam where famid=437
----db1_reset(0 'metaviz@TAPVIZIER1')
----db1_query(0 'metaviz@TAPVIZIER1'):
[1786029780]   Select ucdid, name, class, explain From METAucd where ucdid=358
----db1_reset(0 'metaviz@TAPVIZIER1')
----db1_query(0 'metaviz@TAPVIZIER1'):
[1786029780]   Select ucdid, name, class, explain From METAucd where ucdid=106
----db1_reset(0 'metaviz@TAPVIZIER1')
----db1_query(0 'metaviz@TAPVIZIER1'):
[1786029780]   Select ucdid, name, class, explain From METAucd where ucdid=9
----db1_reset(0 'metaviz@TAPVIZIER1')
----db1_query(0 'metaviz@TAPVIZIER1'):
[1786029780]   Select famid, name, explain From METAfam where famid=1283
----db1_reset(0 'metaviz@TAPVIZIER1')
----db1_query(0 'metaviz@TAPVIZIER1'):
[1786029780]   Select famid, name, explain From METAfam where famid=445
----db1_reset(0 'metaviz@TAPVIZIER1')
----db1_query(0 'metaviz@TAPVIZIER1'):
[1786029780]   Select ucdid, name, class, explain From METAucd where ucdid=37
----db1_reset(0 'metaviz@TAPVIZIER1')
----db1_query(0 'metaviz@TAPVIZIER1'):
[1786029780]   Select famid, name, explain From METAfam where famid=221
----db1_reset(0 'metaviz@TAPVIZIER1')
----db1_query(0 'metaviz@TAPVIZIER1'):
[1786029780]   Select famid, name, explain From METAfam where famid=584
----db1_reset(0 'metaviz@TAPVIZIER1')
----db1_query(0 'metaviz@TAPVIZIER1'):
[1786029780]   Select ucdid, name, class, explain From METAucd where ucdid=123
----db1_reset(0 'metaviz@TAPVIZIER1')
----db1_query(0 'metaviz@TAPVIZIER1'):
[1786029780]   Select famid, name, explain From METAfam where famid=930
----db1_reset(0 'metaviz@TAPVIZIER1')
----db1_query(0 'metaviz@TAPVIZIER1'):
[1786029780]   Select ucdid, name, class, explain From METAucd where ucdid=326
----db1_reset(0 'metaviz@TAPVIZIER1')
----db1_query(0 'metaviz@TAPVIZIER1'):
[1786029780]   Select famid, name, explain From METAfam where famid=1393
----db1_reset(0 'metaviz@TAPVIZIER1')
----db1_query(0 'metaviz@TAPVIZIER1'):
[1786029780]   Select ucdid, name, class, explain From METAucd where ucdid=6
----db1_reset(0 'metaviz@TAPVIZIER1')
----db1_query(0 'metaviz@TAPVIZIER1'):
[1786029780]   Select ucdid, name, class, explain From METAucd where ucdid=183
----db1_reset(0 'metaviz@TAPVIZIER1')
----db1_query(0 'metaviz@TAPVIZIER1'):
[1786029780]   Select famid, name, explain From METAfam where famid=322
----db1_reset(0 'metaviz@TAPVIZIER1')
----db1_query(0 'metaviz@TAPVIZIER1'):
[1786029780]   Select ucdid, name, class, explain From METAucd where ucdid=174
----db1_reset(0 'metaviz@TAPVIZIER1')
----db1_query(0 'metaviz@TAPVIZIER1'):
[1786029780]   Select ucdid, name, class, explain From METAucd where ucdid=288
----db1_reset(0 'metaviz@TAPVIZIER1')
----db1_query(0 'metaviz@TAPVIZIER1'):
[1786029780]   Select famid, name, explain From METAfam where famid=1326
----db1_reset(0 'metaviz@TAPVIZIER1')
----db1_query(0 'metaviz@TAPVIZIER1'):
[1786029780]   Select ucdid, name, class, explain From METAucd where ucdid=449
----db1_reset(0 'metaviz@TAPVIZIER1')
----db1_query(0 'metaviz@TAPVIZIER1'):
[1786029780]   Select famid, name, explain From METAfam where famid=1351
----db1_reset(0 'metaviz@TAPVIZIER1')
----db1_query(0 'metaviz@TAPVIZIER1'):
[1786029780]   Select ucdid, name, class, explain From METAucd where ucdid=352
----db1_reset(0 'metaviz@TAPVIZIER1')
----db1_query(0 'metaviz@TAPVIZIER1'):
[1786029780]   Select famid, name, explain From METAfam where famid=1349
----db1_reset(0 'metaviz@TAPVIZIER1')
----db1_query(0 'metaviz@TAPVIZIER1'):
[1786029780]   Select ucdid, name, class, explain From METAucd where ucdid=351
----db1_reset(0 'metaviz@TAPVIZIER1')
----db1_query(0 'metaviz@TAPVIZIER1'):
[1786029780]   Select famid, name, explain From METAfam where famid=151
----db1_reset(0 'metaviz@TAPVIZIER1')
----db1_query(0 'metaviz@TAPVIZIER1'):
[1786029780]   Select ucdid, name, class, explain From METAucd where ucdid=355
----db1_reset(0 'metaviz@TAPVIZIER1')
----db1_query(0 'metaviz@TAPVIZIER1'):
[1786029780]   Select famid, name, explain From METAfam where famid=1350
----db1_reset(0 'metaviz@TAPVIZIER1')
----db1_query(0 'metaviz@TAPVIZIER1'):
[1786029780]   Select ucdid, name, class, explain From METAucd where ucdid=80
----db1_reset(0 'metaviz@TAPVIZIER1')
----db1_query(0 'metaviz@TAPVIZIER1'):
[1786029780]   Select famid, name, explain From METAfam where famid=313
----db1_reset(0 'metaviz@TAPVIZIER1')
----opt1= 8
----inherit(u=used, h=hidden):
     [u] +source=IX/58
     [u] -ref=VIZ6a74a6d33ac07
====inherit(): added 0 hidden fields
----free temporary files
----db1_close(0 'metaviz@TAPVIZIER1')

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