Simple TargetList Of TargetsFast Xmatch with large catalogs or Simbad
Target Name (resolved by Sesame) or Position:
Target dimension:
NB: The epoch used for the query is the original epoch of the table(s)Radius Box size

  
J/A+A/661/A5
  The eFEDS AGN catalog (Liu+, 2022)
Post annotation
img(gal)
1.J/A+A/661/A5/table1(c)The eFEDS AGN catalog (22079 rows) (released 2022-11-16)
[METAtab] [METAcola]
2.J/A+A/661/A5/table2(c)Spectral properties (27910 rows) (released 2022-11-16)
[METAtab] [METAcola]
3.J/A+A/661/A5/table3APEC fitting results (27910 rows) (released 2022-11-16)
[METAtab] [METAcola]
4.J/A+A/661/A5/table4Single-powerlaw results (27910 rows) (released 2022-11-16)
[METAtab] [METAcola]
5.J/A+A/661/A5/table5Double-powerlaw results (27910 rows) (released 2022-11-16)
[METAtab] [METAcola]
6.J/A+A/661/A5/table6Powerlaw+blackbody results (27910 rows) (released 2022-11-16)
[METAtab] [METAcola]
7.J/A+A/661/A5/table7Gamma-fixed-powerlaw results (27910 rows) (released 2022-11-16)
[METAtab] [METAcola]
8.J/A+A/661/A5/table8Shape-fixed-powerlaw results (27910 rows) (released 2022-11-16)
[METAtab] [METAcola]
9.J/A+A/661/A5/table9Soft-band fitting results (27910 rows) (released 2022-11-16)
[METAtab] [METAcola]
10.J/A+A/661/A5/table10Hard-band fitting results (27910 rows) (released 2022-11-16)
[METAtab] [METAcola]

 
Query by Constraints constraints help applied on Columns (Output Order: + - )
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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)ID-SRC   [1/32683] ID of the sources in the eFEDS main X-ray catalog (Paper I) (ID_SRC) (meta.id;meta.main)
  (1)RAc deg (i) [126.24/145.59] Right ascension (J2000), astrometric corrected (Paper I) (RA_CORR) (pos.eq.ra;meta.main)
  (1)DEc deg (i) [-2.91/5.97] Declination (J2000), astrometric corrected (Paper I) (DEC_CORR) (pos.eq.dec;meta.main)
  (1+2)DetLike  0.2-2.3 keV source detection likelihood (Paper I) (DET_LIKE) (stat.likelihood)
  (1+2)inArea90  Whether located inside the inner 90%-area region of eFEDS (Paper I) (inArea90) (meta.code)
  (1)CTPLS8 (char) ID of the best LS8 counterpart (Paper II) (CTPLS8UNIQUE_OBJID) (meta.id)
  (1)RALdeg deg [126.23/145.59] Right ascension (J2000) of the best LS8 counterpart (Paper II) (CTPLS8RA) (pos.eq.ra)
  (1)DELdeg deg [-2.91/5.97] Declination (J2000) of the best LS8 counterpart (Paper II) (CTPLS8DEC) (pos.eq.dec)
  (1)CTPqual   [2/4] Counterpart quality (Paper II) A value ≥2 is recommended (CTP_quality) (meta.code.qual)
  (1)CTPClass   [2/3] Classification of the optical counterpart (Paper II) (CTP_CLASS) (Note 1)   (src.class)

ALL cols
    
 (i)indexed column
  (1)CTPz   [0.0/8.0] Redshift of the optical counterpart (Paper II) (CTP_REDSHIFT) (src.redshift.phot)
  (1)CTPzgrade   [2/5] Redshift Grade (Paper II) A value ≥3 is recommended (CTPREDSHIFTGRADE) (meta.code.qual)
  (1)inKiDSFlag   [0/1] Whether located inside the region of the KiDS survey (Paper II) (inKiDSflag) (meta.code)
  (1)LxModel   [1/5] Index of selected model for luminosity measurement (LxModel) (Note 2)   (meta.code)
  (1+4)NHclass   [1/4] Class of AGN NH measurement with model 1 (single-powerlaw) (NHclass) (Note 3)   (meta.code)
  (1+2)FSModel   [3/6] Index of selected model for 0.5-2keV flux (FSModel) (Note 4)   (meta.code)
  (1+2)FHModel   [5/7] Index of selected model for 2.3-5keV flux (FHModel) (Note 5)   (meta.code)
  (1+2)galNH cm-2 Total column density of Galactic absorption (galNH) (phys.columnDensity)
  (1+2)galNHI cm-2 HI column density from HI4PI (galNHI) (phys.columnDensity)
  (1+2)SrcCts ct Source net counts in the 0.2-5 keV band (SrcCts) (phot.count;em.X-ray)
  (1+4)FluxcMedS mW/m2 Absorption corrected flux in observed 0.5-2 keV, posterior median (FluxCorrMeds) (phot.flux;em.X-ray)
  (1+4)b_FluxcS mW/m2 Absorption corrected flux in observed 0.5-2 keV, 1sigma lower limit (FluxCorrLo1s) (phot.flux;em.X-ray.soft)
  (1+4)B_FluxcS mW/m2 Absorption corrected flux in observed 0.5-2 keV, 1sigma upper limit (FluxCorrUp1s) (phot.flux;em.X-ray.soft)

ALL cols
    
 (i)indexed column
  (1+4)FluxcMedT mW/m2 Absorption corrected flux in observed 2.3-5 keV, posterior median (FluxCorrMedt) (phot.flux;em.X-ray)
  (1+4)b_FluxcT mW/m2 Absorption corrected flux in observed 2.3-5 keV, 1sigma lower limit (FluxCorrLo1t) (phot.flux;em.X-ray.medium)
  (1+4)B_FluxcT mW/m2 Absorption corrected flux in observed 2.3-5 keV, 1sigma upper limit (FluxCorrUp1t) (phot.flux;em.X-ray.medium)
  (1+4+5+6+7+8)FluxIMedS mW/m2 Absorption corrected flux in rest-frame 0.5-2 keV, posterior median (FluxIntrMeds) (phot.flux;em.X-ray)
  (1+4+5+6+7+8)b_FluxIS mW/m2 Absorption corrected flux in rest-frame 0.5-2keV, 1sigma lower limit (FluxIntrLo1s) (phot.flux;em.X-ray.soft)
  (1+4+5+6+7+8)B_FluxIS mW/m2 Absorption corrected flux in rest-frame 0.5-2keV, 1sigma upper limit (FluxIntrUp1s) (phot.flux;em.X-ray.soft)
  (1+4+5+6+7+8)FluxIMed2keV mW/m2/eV Absorption corrected flux at rest-frame 2keV, median (FluxIntrMed2keV) (phot.flux;em.X-ray)
  (1+4+5+6+7+8)b_FluxI2keV mW/m2/eV Absorption corrected flux at rest-frame 2keV, 1sigma lower limit (FluxIntrLo12keV) (phot.flux)
  (1+4+5+6+7+8)B_FluxI2keV mW/m2/eV Absorption corrected flux at rest-frame 2keV, 1sigma upper limit (FluxIntrUp12keV) (phot.flux)
  (1+4+5+6+7+8)LumIMedS 10-7W Intrinsic luminosity in rest-frame 0.5-2 keV, posterior median (LumiIntrMeds) (phys.luminosity;em.X-ray)
  (1+4+5+6+7+8)b_LumIS 10-7W Intrinsic luminosity in rest-frame 0.5-2 keV, 1sigma lower limit (LumiIntrLo1s) (phys.luminosity;em.X-ray.soft)
  (1+4+5+6+7+8)B_LumIS 10-7W Intrinsic luminosity in rest-frame 0.5-2 keV, 1sigma upper limit (LumiIntrUp1s) (phys.luminosity;em.X-ray.soft)
  (1+4+5+6+7+8)LumIMed2keV 10-7W/eV Intrinsic luminosity at rest-frame 2keV, posterior median in erg/s/eV (LumiIntrMed2keV) (phys.luminosity;em.X-ray)

ALL cols
    
 (i)indexed column
  (1+4+5+6+7+8)b_LumI2keV 10-7W/eV Intrinsic luminosity at rest-frame 2keV, 1sigma lower limit in erg/s/eV (LumiIntrLo12keV) (phys.luminosity)
  (1+4+5+6+7+8)B_LumI2keV 10-7W/eV Intrinsic luminosity at rest-frame 2keV, 1sigma upper limit in erg/s/eV (LumiIntrUp12keV) (phys.luminosity)
  (1+2+3+4+5+6+7+8+9)FluxObsMedS mW/m2 Observed flux in observed 0.5-2 keV, posterior median (FluxObsvMeds) (phot.flux;em.X-ray)
  (1+2+3+4+5+6+7+8+9)b_FluxObsS mW/m2 Observed flux in observed 0.5-2 keV, 1sigma lower limit (FluxObsvLo1s) (phot.flux;em.X-ray.soft)
  (1+2+3+4+5+6+7+8+9)B_FluxObsS mW/m2 Observed flux in observed 0.5-2 keV, 1sigma upper limit (FluxObsvUp1s) (phot.flux;em.X-ray.soft)
  (1+2+3+4+5+6+7+8+10)FluxObsMedT mW/m2 Observed flux in observed 2.3-5 keV, posterior median (FluxObsvMedt) (phot.flux;em.X-ray)
  (1+2+3+4+5+6+7+8+10)b_FluxObsT mW/m2 Observed flux in observed 2.3-5 keV, 1sigma lower limit (FluxObsvLo1t) (phot.flux;em.X-ray.medium)
  (1+2+3+4+5+6+7+8+10)B_FluxObsT mW/m2 Observed flux in observed 2.3-5 keV, 1sigma upper limit (FluxObsvUp1t) (phot.flux;em.X-ray.medium)
  (1)lognHKLm1  log AGN column density, KL divergence (in nats units) (lognHKLm1) (stat.fit.param)
  (1)b_lognHm1 [cm-2] log AGN column density, HDI lower limit (lognHHLom1) (phys.columnDensity;stat.min)
  (1)B_lognHm1 [cm-2] log AGN column density, HDI upper limit (lognHHUpm1) (phys.columnDensity;stat.max)
  (1)lognHMedm1 [cm-2] log AGN column density, posterior median (lognHMedm1) (phys.columnDensity)
  (1)GammaKLm3  primary power-law slope in model 3, KL divergence (in nats units) (GammaKLm3) (stat.fit.param)

ALL cols
    
 (i)indexed column
  (1)b_GammaHm3  primary power-law slope in model 3, HDI lower limit (GammaHLom3) (arith.grad;stat.param;meta.modelled)
  (1)B_GammaHm3  primary power-law slope in model 3, HDI upper limit (GammaHUpm3) (arith.grad;stat.param;meta.modelled)
  (1)GammaMedm3  primary power-law slope in model 3, posterior median (GammaMedm3) (spect.index)
  (1)logZm0 [-] log Bayesian evidence with model 0: APEC (logZ_m0) (stat.fit.param)
  (1)logZm1 [-] log Bayesian evidence with model 1: single powerlaw (logZ_m1) (stat.fit.param)
  (1)logZm2 [-] log Bayesian evidence with model 2: double powerlaw (logZ_m2) (stat.fit.param)
  (1)logZm3 [-] log Bayesian evidence with model 3: powerlaw + blackbody (logZ_m3) (stat.fit.param)
  (1)logZm4 [-] log Bayesian evidence with model 4: powerlaw with Gamma fixed at 2.0 (logZ_m4) (stat.fit.param)
  (1)logZm5 [-] log Bayesian evidence with model 5: shape-fixed powerlaw (logZ_m5) (stat.fit.param)
  (1)L2500 10-7W/Hz (n) The rest-frame 2500 luminosity in erg/s/Hz (L2500) (phys.luminosity)
  (1)L5100 10-7W/Hz (n) The rest-frame 5100 luminosity in erg/s/Hz (L5100) (phys.luminosity)
  (1)W1mag mag (n) LS8-WISE W1 AB magnitude (Paper II) (W1) (phot.mag;em.IR.3-4um)
  (1)e_W1mag mag (n) LS8-WISE W1 magnitude error (Paper II) (W1_ERR) (stat.error;phot.mag)

ALL cols
    
(n) indicates a possible blank or NULL column(i)indexed column
  (1)W2mag mag (n) LS8-WISE W2 AB magnitude (Paper II) (W2) (phot.mag;em.IR.4-8um)
  (1)e_W2mag mag (n) LS8-WISE W2 magnitude error (Paper II) (W2_ERR) (stat.error;phot.mag)
   (ALL)PaperI (char) Display the Paper I (Brunner et al., Cat. J/A+A/661/A1) data (meta.ref.url)
   (ALL)PaperII (char) Display the Paper II (Salvato et al., Cat. J/A+A/661/A3) data (meta.ref.url)
  (2)RAcdeg deg [126.24/145.66] Right ascension (J2000), astrometric corrected (Paper I) (RA_CORR) (pos.eq.ra)
  (2)DEcdeg deg [-2.91/5.97] Declination (J2000), astrometric corrected (Paper I) (DEC_CORR) (pos.eq.dec)
  (2)ExtLike  X-ray source extent likelihood (Paper I) (EXT_LIKE) (stat.likelihood)
  (2)ExpTime s Spectra exposure time (Exposure) (time.duration;obs.exposure)
  (2)RAJ2000 deg (i) [126.24/145.66] Right ascension (J2000) before astrometric correction (Paper I) (RA) (pos.eq.ra;meta.main)
  (2)DEJ2000 deg (i) [-2.91/5.97] Declination (J2000) before astrometric correction (Paper I) (DEC) (pos.eq.dec;meta.main)
  (2)Rad arcsec [12/259] Source extraction radius (Rad) (phys.angSize)
  (2)Ann1 arcsec [22/515] Inner radius of background extraction region (Ann1) (phys.angSize;obs.field)
  (2)Ann2 arcsec [171/900] Outer radius of background extraction region (Ann2) (phys.angSize;obs.field)

ALL cols
    
(n) indicates a possible blank or NULL column(i)indexed column
  (2)RegArea deg2 Geometry area of source extraction region (REGAREA_s) (phys.angSize)
  (2)Backscal deg2 Source BACKSCAL (Backscal_s) (phys.angSize)
  (2)BackscalBkg deg2 Background BACKSCAL (Backscal_b) (phys.angSize)
  (2)Rate0.2-2.3 ct/s Net count rate in 0.2-2.3 keV (Rated22d3) (phot.count;em.X-ray)
  (2)e_Rate0.2-2.3 ct/s Net count rate error in 0.2-2.3 keV (RateErrd22d3) (stat.error)
  (2)Rate0.2-0.5 ct/s Net count rate in 0.2-0.5 keV (Rated2d5) (phot.count;em.X-ray)
  (2)e_Rate0.2-0.5 ct/s Net count rate error in 0.2-0.5 keV (RateErrd2d5) (stat.error)
  (2)Rate0.5-1 ct/s Net count rate in 0.5-1 keV (Rated51) (phot.count;em.X-ray)
  (2)e_Rate0.5-1 ct/s Net count rate error in 0.5-1 keV (RateErrd51) (stat.error)
  (2)Rate1-2 ct/s Net count rate in 1-2 keV (Rate12) (phot.count;em.X-ray)
  (2)e_Rate1-2 ct/s Net count rate error in 1-2 keV (RateErr12) (stat.error)
  (2)Rate2-4.5 ct/s Net count rate in 2-4.5 keV (Rate24d5) (phot.count;em.X-ray)
  (2)e_Rate2-4.5 ct/s Net count rate error in 2-4.5 keV (RateErr24d5) (stat.error)

ALL cols
    
(n) indicates a possible blank or NULL column(i)indexed column
  (2)Rate2.3-5 ct/s Net count rate in 2.3-5 keV (Rate2d35) (phot.count;em.X-ray)
  (2)e_Rate2.3-5 ct/s Net count rate error in 2.3-5 keV (RateErr2d35) (stat.error)
  (2)Rate5-8 ct/s Net count rate in 5-8 keV (Rate58) (phot.count;em.X-ray)
  (2)e_Rate5-8 ct/s Net count rate error in 5-8 keV (RateErr58) (stat.error)
  (2)BkgCts0.2-0.6 ct Background counts in 0.2-0.6 keV (BkgCtsd2d6) (instr.background;em.X-ray.soft)
  (2)e_BkgCts0.2-0.6 ct Background counts error in 0.2-0.6 keV (BkgCtsErrd2d6) (stat.error)
  (2)BkgCts0.6-2.3 ct Background counts in 0.6-2.3 keV (BkgCtsd62d3) (instr.background;em.X-ray.soft)
  (2)e_BkgCts0.6-2.3 ct Background counts error in 0.6-2.3 keV (BkgCtsErrd62d3) (stat.error)
  (2)BkgCts2.3-5 ct Background counts in 2.3-5 keV (BkgCts2d35) (instr.background;em.X-ray.medium)
  (2)e_BkgCts2.3-5 ct Background counts error in 2.3-5 keV (BkgCtsErr2d35) (stat.error)
  (2)BkgCts5-8 ct Background counts in 5-8 keV (BkgCts58) (instr.background;em.X-ray.medium)
  (2)e_BkgCts5-8 ct Background counts error in 5-8 keV (BkgCtsErr58) (stat.error)
  (2)PSFCor0.2-0.5  PSF-loss correction (ARF CORRPSF) averaged in 0.2-0.5 keV (PSFCord2d5) (arith.factor)

ALL cols
    
(n) indicates a possible blank or NULL column(i)indexed column
  (2)PSFCor0.5-1  PSF-loss correction (ARF CORRPSF) averaged in 0.5-1 keV (PSFCord51) (arith.factor)
  (2)PSFCor1-2  PSF-loss correction (ARF CORRPSF) averaged in 1-2 keV (PSFCor12) (arith.factor)
  (2)PSFCor2.3-5  PSF-loss correction (ARF CORRPSF) averaged in 2.3-5 keV (PSFCor2d35) (arith.factor)
  (2)Nempty   [35/771] Number of empty channels between channel 20 and 900 (Nempty) (meta.number)
  (3+4+5+6+7+8+9+10)z  The redshift adopted for the spectral model (Redshift) (src.redshift)
  (3+4+5+6+7+9+10)lognHKL  log AGN column density, KL divergence (in nats units) (lognH_KL) (stat.fit.param)
  (3+4+5+6+7+9)b_lognHH [cm-2] log AGN column density, HDI lower limit (lognH_HLo) (phys.columnDensity;stat.min)
  (3+4+5+6+7+9)B_lognHH [cm-2] log AGN column density, HDI upper limit (lognH_HUp) (phys.columnDensity;stat.max)
  (3+6)logkTKL  log temperature, KL divergence (in nats units) (logkT_KL) (stat.fit.param)
  (3+6)b_logkTH [keV] log temperature, HDI lower limit (logkT_HLo) (phys.temperature;stat.min)
  (3+6)B_logkTH [keV] log temperature, HDI upper limit (logkT_HUp) (phys.temperature;stat.max)
  (3)logAbundKL  log abundance, KL divergence (in nats units) (logAbundanc_KL) (stat.fit.param)
  (3)b_logAbunH  log abundance, HDI lower limit (logAbundanc_HLo) (meta.note)

ALL cols
    
(n) indicates a possible blank or NULL column(i)indexed column
  (3)B_logAbunH  log abundance, HDI upper limit (logAbundanc_HUp) (meta.note)
  (3)logApecNormKL  log APEC normalization, KL divergence (in nats units) (logApecNorm_KL) (stat.fit.param)
  (3)b_logApecNormH [cm-5] log APEC normalization, HDI lower limit (logApecNorm_HLo) (arith.zp;stat.min)
  (3)B_logApecNormH [cm-5] log APEC normalization, HDI upper limit (logApecNorm_HUp) (arith.zp;stat.max)
  (3+4+5+6+7+9+10)lognHBF [cm-2] log AGN column density, best-fit model (lognH_BF) (phys.columnDensity)
  (3+6)logkTBF [keV] log temperature, best-fit model (logkT_BF) (phys.temperature)
  (3)logAbundBF  log abundance, best-fit model (logAbundanc_BF) (phys.abund)
  (3)logApecNBF [cm-5] log APEC normalization, best-fit model (logApecNorm_BF) (stat.fit.param)
  (3+4+5+6+7+8+9)FluxObsBFS mW/m2 Observed flux in observed 0.5-2 keV, best-fit model (FluxObsvBFs) (phot.flux;em.X-ray)
  (3+4+5+6+7+8+9)b2_FluxObsS mW/m2 Observed flux in observed 0.5-2 keV, 2sigma lower limit (FluxObsvLo2s) (phot.flux;em.X-ray)
  (3+4+5+6+7+8+9)B2_FluxObsS mW/m2 Observed flux in observed 0.5-2 keV, 2sigma upper limit (FluxObsvUp2s) (phot.flux;em.X-ray)
  (3+4+5+6+7+8+10)FluxObsBFT mW/m2 Observed flux in observed 2.3-5 keV, best-fit model (FluxObsvBFt) (phot.flux;em.X-ray)
  (3+4+5+6+7+8+10)b2_FluxObsT mW/m2 Observed flux in observed 2.3-5 keV, 2sigma lower limit (FluxObsvLo2t) (phot.flux;em.X-ray)

ALL cols
    
(n) indicates a possible blank or NULL column(i)indexed column
  (3+4+5+6+7+8+10)B2_FluxObsT mW/m2 Observed flux in observed 2.3-5 keV, 2sigma upper limit (FluxObsvUp2t) (phot.flux;em.X-ray)
  (3+4+5+6+7+9+10)lognHMed [cm-2] log AGN column density, posterior median (lognH_Med) (phys.columnDensity)
  (3+4+5+6+7+9+10)b_lognH [cm-2] log AGN column density, percentile lower limit (lognH_Lo) (phys.columnDensity;stat.min)
  (3+4+5+6+7+9+10)B_lognH [cm-2] log AGN column density, percentile upper limit (lognH_Up) (phys.columnDensity;stat.max)
  (3+4+5+6+7+9+10)lognHMean [cm-2] log AGN column density, mean (lognH_Mean) (phys.columnDensity)
  (3+4+5+6+7+9+10)s_lognH [cm-2] log AGN column density, standard deviation (lognH_Std) (stat.stdev;phys.columnDensity)
  (3+6)logkTMed [keV] log temperature, posterior median (logkT_Med) (phys.temperature)
  (3+6)b_logkT [keV] log temperature, percentile lower limit (logkT_Lo) (phys.temperature;stat.min)
  (3+6)B_logkT [keV] log temperature, percentile upper limit (logkT_Up) (phys.temperature;stat.max)
  (3+6)logkTMean [keV] log temperature, mean (logkT_Mean) (phys.temperature)
  (3+6)s_logkT [keV] log temperature, standard deviation (logkT_Std) (stat.stdev;phys.temperature)
  (3)logAbundMed  log abundance, posterior median (logAbundanc_Med) (phys.abund)
  (3)b_logAbund  log abundance, percentile lower limit (logAbundanc_Lo) (meta.note)

ALL cols
    
(n) indicates a possible blank or NULL column(i)indexed column
  (3)B_logAbund  log abundance, percentile upper limit (logAbundanc_Up) (meta.note)
  (3)logAbundMean  log abundance, mean (logAbundanc_Mean) (phys.abund)
  (3)s_logAbund  log abundance, standard deviation (logAbundanc_Std) (stat.stdev)
  (3)logApecNMed [cm-5] log APEC normalization, posterior median (logApecNorm_Med) (stat.fit.param)
  (3)b_logApecN [cm-5] log APEC normalization, percentile lower limit (logApecNorm_Lo) (arith.zp;stat.min)
  (3)B_logApecN [cm-5] log APEC normalization, percentile upper limit (logApecNorm_Up) (arith.zp;stat.max)
  (3)logApecNMean [cm-5] log APEC normalization, mean (logApecNorm_Mean) (stat.fit.param)
  (3)s_logApecN [cm-5] log APEC normalization, standard deviation (logApecNorm_Std) (stat.stdev;arith.zp;arith.ratio)
  (3+4+5+6+7+8+9+10)logBkgNMed  log background normalization, posterior median (logBkgNorm_Med) (instr.background)
  (3+4+5+6+7+8)b_logBkgN  log background normalization, percentile lower limit (logBkgNorm_Lo) (instr.background;arith.ratio)
  (3+4+5+6+7+8)B_logBkgN  log background normalization, percentile upper limit (logBkgNorm_Up) (instr.background;arith.ratio)
  (3+4+5+6+7+8+9+10)logBkgNMean  log background normalization, mean (logBkgNorm_Mean) (instr.background)
  (3+4+5+6+7+8+10)s_logBkgN  log background normalization, standard deviation (logBkgNorm_Std) (instr.background;arith.ratio)

ALL cols
    
(n) indicates a possible blank or NULL column(i)indexed column
  (3+4+5+6)chi25  (n) Chi^2 of the best-fit model against the rebinned data (≥25 cts/bin) (chi25) (stat.fit.chi2)
  (3+4+5+6)dof25  (n) DOF of the rebinned data, which has at least 25 counts per bin (dof25) (stat.fit.dof)
  (3+4+5+6+7+8+9+10)logZ  log10 Bayesian evidence (logZ) (stat.fit.param)
  (4+5+6+9+10)GammaKL  power-law slope, KL divergence (in nats units) (Gamma_KL) (stat.fit.param)
  (4+5+6+9)b_GammaH  power-law slope, HDI lower limit (Gamma_HLo) (arith.grad;stat.min)
  (4+5+6+9)B_GammaH  power-law slope, HDI upper limit (Gamma_HUp) (arith.grad;stat.max)
  (4+5+6+7+8+9+10)logPowNKL  log power-law normalization, KL divergence (in nats units) (logPowNorm_KL) (stat.fit.param)
  (4)b_logPowNH ph/keV/cm2/slog power-law normalization, HDI lower limit (logPowNorm_HLo) (arith.zp;arith.ratio)
  (4)B_logPowNH ph/keV/cm2/slog power-law normalization, HDI upper limit (logPowNorm_HUp) (arith.zp;arith.ratio)
  (4+5+6+9+10)GammaBF  power-law slope, best-fit model (Gamma_BF) (spect.index)
  (4)logPowNBF ph/keV/cm2/slog power-law normalization, best-fit model (logPowNorm_BF) (stat.fit.param)
  (4)FluxcBFS mW/m2 Absorption corrected flux in observed 0.5-2 keV, best-fit model (FluxCorrBFs) (phot.flux;em.X-ray)
  (4)b2_FluxcS mW/m2 Absorption corrected flux in observed 0.5-2 keV, 2sigma lower limit (FluxCorrLo2s) (stat.error)

ALL cols
    
(n) indicates a possible blank or NULL column(i)indexed column
  (4)B2_FluxcS mW/m2 Absorption corrected flux in observed 0.5-2 keV, 2sigma upper limit (FluxCorrUp2s) (stat.error)
  (4)FluxcBFT mW/m2 Absorption corrected flux in observed 2.3-5 keV, best-fit model (FluxCorrBFt) (phot.flux;em.X-ray)
  (4)b2_FluxcT mW/m2 Absorption corrected flux in observed 2.3-5 keV, 2sigma lower limit (FluxCorrLo2t) (stat.error)
  (4)B2_FluxcT mW/m2 Absorption corrected flux in observed 2.3-5 keV, 2sigma upper limit (FluxCorrUp2t) (stat.error)
  (4+5+6+7+8)FluxIBFS mW/m2 Absorption corrected flux in rest-frame 0.5-2 keV, best-fit model (FluxIntrBFs) (phot.flux;em.X-ray)
  (4+5+6+7+8)b2_FluxIS mW/m2 Absorption corrected flux in rest-frame 0.5-2 keV, 2sigma lower limit (FluxIntrLo2s) (stat.error)
  (4+5+6+7+8)B2_FluxIS mW/m2 Absorption corrected flux in rest-frame 0.5-2 keV, 2sigma upper limit (FluxIntrUp2s) (stat.error)
  (4+5+6+7+8)FluxIBF2keV mW/m2/eV Absorption corrected flux at rest-frame 2keV, best- fit (FluxIntrBF2keV) (phot.flux;em.X-ray)
  (4+5+6+7+8)b2_FluxI2keV mW/m2/eV Absorption corrected flux at rest-frame 2keV, 2sigma lower limit (FluxIntrLo22keV) (stat.error)
  (4+5+6+7+8)B2_FluxI2keV mW/m2/eV Absorption corrected flux at rest-frame 2keV, 2sigma upper limit (FluxIntrUp22keV) (stat.error)
  (4+5+6+7+8)LumIBFS 10-7W (n) Intrinsic luminosity in rest-frame 0.5-2 keV, best-fit model (LumiIntrBFs) (phys.luminosity;em.X-ray)
  (4+5+6+7)b2_LumIS 10-7W (n) Intrinsic luminosity in rest-frame 0.5-2 keV, 2sigma lower limit (LumiIntrLo2s) (stat.error)
  (4+5+6+7+8)B2_LumIS 10-7W (n) Intrinsic luminosity in rest-frame 0.5-2 keV, 2sigma upper limit (LumiIntrUp2s) (stat.error)

ALL cols
    
(n) indicates a possible blank or NULL column(i)indexed column
  (4+5+6+7+8)LumIBF2keV 10-7W/eV (n) Intrinsic luminosity at rest-frame 2keV, best-fit model (LumiIntrBF2keV) (phys.luminosity;em.X-ray)
  (4+5+6+7+8)b2_LumI2keV 10-7W/eV (n) Intrinsic luminosity at rest-frame 2keV, 2sigma lower limit (LumiIntrLo22keV) (stat.error)
  (4+5+6+7+8)B2_LumI2keV 10-7W/eV (n) Intrinsic luminosity at rest-frame 2keV, 2sigma upper limit (LumiIntrUp22keV) (stat.error)
  (4+5+6+9+10)GammaMed  power-law slope, posterior median (Gamma_Med) (spect.index)
  (4+5+6+9)b_Gamma  power-law slope, percentile lower limit (Gamma_Lo) (arith.grad;stat.min)
  (4+5+6+9)B_Gamma  power-law slope, percentile upper limit (Gamma_Up) (arith.grad;stat.max)
  (4+5+6+9+10)GammaMean  power-law slope, mean (Gamma_Mean) (spect.index)
  (4+5+6+9+10)s_Gamma  power-law slope, standard deviation (Gamma_Std) (stat.stdev)
  (4)logPowNMed ph/keV/cm2/slog power-law normalization, posterior median (logPowNorm_Med) (stat.fit.param)
  (4)b_logPowN ph/keV/cm2/slog power-law normalization, percentile lower limit (logPowNorm_Lo) (arith.zp;arith.ratio)
  (4)B_logPowN ph/keV/cm2/slog power-law normalization, percentile upper limit (logPowNorm_Up) (arith.zp;arith.ratio)
  (4)logPowNMean ph/keV/cm2/slog power-law normalization, mean (logPowNorm_Mean) (stat.fit.param)
  (4)s_logPowN ph/keV/cm2/slog power-law normalization, standard deviation (logPowNorm_Std) (arith.zp;arith.ratio)

ALL cols
    
(n) indicates a possible blank or NULL column(i)indexed column
  (5)dGmKL  Soft-powerlaw slope minus primary-powerlaw slope, KL divergence (in nats units) (dGm_KL) (stat.fit.param)
  (5)b_dGmH  Soft-powerlaw slope minus primary-powerlaw slope, HDI lower limit (dGm_HLo) (arith.grad;stat.fit.omc)
  (5)B_dGmH  Soft-powerlaw slope minus primary-powerlaw slope, HDI upper limit (dGm_HUp) (arith.grad;stat.fit.omc)
  (5+6+7+8+9)b_logPowNH [ph/keV/cm2/s]log power-law normalization, HDI lower limit (logPowNorm_HLo) (arith.zp;arith.ratio)
  (5+6+7+8+9)B_logPowNH [ph/keV/cm2/s]log power-law normalization, HDI upper limit (logPowNorm_HUp) (arith.zp;arith.ratio)
  (5)logFracKL  (n) Constant factor multiplied to the soft power-law, KL divergence (in nats units) (logFrac_KL) (stat.fit.param)
  (5)b_logFracH  Constant factor multiplied to the soft power-law, HDI lower limit (logFrac_HLo) (arith.factor;arith.zp)
  (5)B_logFracH  Constant factor multiplied to the soft power-law, HDI upper limit (logFrac_HUp) (arith.factor;arith.zp)
  (5)dGmBF  Soft-powerlaw slope minus primary-powerlaw slope, best-fit model (dGm_BF) (stat.fit.param)
  (5+6+7+8+9+10)logPowNBF [ph/keV/cm2/s]log power-law normalization, best-fit model (logPowNorm_BF) (stat.fit.param)
  (5)logFracBF  Constant factor multiplied to the soft power-law, best-fit model (logFrac_BF) (stat.fit.param)
  (5+6+7+8)FluxCBFS mW/m2 Absorption corrected flux in observed 0.5-2 keV, best-fit model (FluxCorrBFs) (phot.flux;em.X-ray)
  (5+6+7+8)FluxCMedS mW/m2 Absorption corrected flux in observed 0.5-2 keV, posterior median (FluxCorrMeds) (phot.flux;em.X-ray)

ALL cols
    
(n) indicates a possible blank or NULL column(i)indexed column
  (5+6+7+8)b_FluxCS mW/m2 Absorption corrected flux in observed 0.5-2 keV, 1sigma lower limit (FluxCorrLo1s) (phot.flux;em.X-ray.soft)
  (5+6+7+8)B_FluxCS mW/m2 Absorption corrected flux in observed 0.5-2 keV, 1sigma upper limit (FluxCorrUp1s) (phot.flux;em.X-ray.soft)
  (5+6+7+8)b2_FluxCS mW/m2 Absorption corrected flux in observed 0.5-2 keV, 2sigma lower limit (FluxCorrLo2s) (stat.error)
  (5+6+7+8)B2_FluxCS mW/m2 Absorption corrected flux in observed 0.5-2 keV, 2sigma upper limit (FluxCorrUp2s) (stat.error)
  (5+6+7+8+10)FluxCBFT mW/m2 Absorption corrected flux in observed 2.3-5 keV, best-fit model (FluxCorrBFt) (phot.flux;em.X-ray)
  (5+6+7+8+10)FluxCMedT mW/m2 Absorption corrected flux in observed 2.3-5 keV, posterior median (FluxCorrMedt) (phot.flux;em.X-ray)
  (5+6+7+8)b_FluxCT mW/m2 Absorption corrected flux in observed 2.3-5 keV, 1sigma lower limit (FluxCorrLo1t) (phot.flux;em.X-ray.medium)
  (5+6+7+8)B_FluxCT mW/m2 Absorption corrected flux in observed 2.3-5 keV, 1sigma upper limit (FluxCorrUp1t) (phot.flux;em.X-ray.medium)
  (5+6+7+8)b2_FluxCT mW/m2 Absorption corrected flux in observed 2.3-5 keV, 2sigma lower limit (FluxCorrLo2t) (stat.error)
  (5+6+7+8)B2_FluxCT mW/m2 Absorption corrected flux in observed 2.3-5 keV, 2sigma upper limit (FluxCorrUp2t) (stat.error)
  (5)dGmMed  Soft-powerlaw slope minus primary-powerlaw slope, posterior median (dGm_Med) (stat.fit.param)
  (5)b_dGm  Soft-powerlaw slope minus primary-powerlaw slope, 1sigma lower limit (dGm_Lo) (arith.grad;stat.fit.omc)
  (5)B_dGm  Soft-powerlaw slope minus primary-powerlaw slope, 1sigma upper limit (dGm_Up) (arith.grad;stat.fit.omc)

ALL cols
    
(n) indicates a possible blank or NULL column(i)indexed column
  (5)dGmMean  Soft-powerlaw slope minus primary-powerlaw slope, mean (dGm_Mean) (stat.fit.param)
  (5)s_dGm  Soft-powerlaw slope minus primary-powerlaw slope, standard deviation (dGm_Std) (arith.grad;stat.fit.omc)
  (5+6+7+8+9+10)logPowNMed [ph/keV/cm2/s]log power-law normalization, posterior median (logPowNorm_Med) (stat.fit.param)
  (5+6+7+8+9+10)b_logPowN [ph/keV/cm2/s]log power-law normalization, percentile lower limit (logPowNorm_Lo) (arith.zp;arith.ratio)
  (5+6+7+8+9+10)B_logPowN [ph/keV/cm2/s]log power-law normalization, percentile upper limit (logPowNorm_Up) (arith.zp;arith.ratio)
  (5+6+7+8+9+10)logPowNMean [ph/keV/cm2/s]log power-law normalization, mean (logPowNorm_Mean) (stat.fit.param)
  (5+6+7+8+9+10)s_logPowN [ph/keV/cm2/s]log power-law normalization, standard deviation (logPowNorm_Std) (arith.zp;arith.ratio)
  (5)logFracMed  Constant factor multiplied to the soft power-law, posterior median (logFrac_Med) (stat.fit.param)
  (5)b_logFrac  Constant factor multiplied to the soft power-law, 1sigma lower limit (logFrac_Lo) (arith.factor;arith.zp)
  (5)B_logFrac  Constant factor multiplied to the soft power-law, 1sigma upper limit (logFrac_Up) (arith.factor;arith.zp)
  (5)logFracMean  Constant factor multiplied to the soft power-law, mean (logFrac_Mean) (stat.fit.param)
  (5)s_logFrac  Constant factor multiplied to the soft power-law, standard deviation (logFrac_Std) (arith.factor;arith.zp)
  (6)logBBNKL  log blackbody normalization, KL divergence (in nats units) (logBBNorm_KL) (stat.fit.param)

ALL cols
    
(n) indicates a possible blank or NULL column(i)indexed column
  (6)b_logBBNH [10+24W/pc2]log blackbody normalization in 10+31erg/pc2, HDI lower limit (logBBNorm_HLo) (arith.zp;arith.ratio)
  (6)B_logBBNH [10+24W/pc2]log blackbody normalization in 10+31erg/pc2, HDI upper limit (logBBNorm_HUp) (arith.zp;arith.ratio)
  (6)logBBNBF [10+24W/pc2]log blackbody normalization in 10+31erg/pc2, best-fit model (logBBNorm_BF) (stat.fit.param)
  (6)logBBNMed [10+24W/pc2]log blackbody normalization in 10+31erg/s/pc2, posterior median (logBBNorm_Med) (stat.fit.param)
  (6)b_logBBN [10+24W/pc2]log blackbody normalization in 10+31erg/s/pc2, percentile lower limit (logBBNorm_Lo) (arith.zp;arith.ratio)
  (6)B_logBBN [10+24W/pc2]log blackbody normalization in 10+31erg/s/pc2, percentile upper limit (logBBNorm_Up) (arith.zp;arith.ratio)
  (6)logBBNMean [10+24W/pc2]log blackbody normalization in 10+31erg/s/pc2, mean (logBBNorm_Mean) (stat.fit.param)
  (6)s_logBBN [10+24W/pc2]log blackbody normalization in 10+31erg/s/pc2, standard deviation (logBBNorm_Std) (arith.zp;arith.ratio)
  (6)logRbb  log blackbody relative strength at 1keV (logRbb) (stat.fit.param)
  (8)b2_LumI2S 10-7W (n) Intrinsic luminosity in rest-frame 0.5-2 keV, 2sigma lower limit (LumiIntrs) (stat.error)
  (9)blogBkgN  log background normalization, percentile lower limit (logBkgNorm_Lo) (stat.error)
  (9)BlogBkgN  log background normalization, percentile upper limit (logBkgNorm_Up) (stat.error)
  (9)logBkgN  log background normalization, standard deviation (logBkgNorm_Std) (instr.background)

ALL cols
    
(n) indicates a possible blank or NULL column(i)indexed column
  (10)e_Gamma  power-law slope, HDI lower limit (Gamma_HLo) (stat.error)
  (10)E_Gamma  power-law slope, HDI upper limit (Gamma_HUp) (stat.error;stat.max)
  (10)b_FluxCMedT mW/m2 Absorption corrected flux in observed 2.3-5 keV, 1sigma lower limit (FluxCorrLo1t) (phot.flux;em.X-ray.medium)
  (10)B_FluxCMedT mW/m2 Absorption corrected flux in observed 2.3-5 keV, 1sigma upper limit (FluxCorrUp1t) (phot.flux;em.X-ray.medium)
  (10)b2_FluxCMedT mW/m2 Absorption corrected flux in observed 2.3-5 keV, 2sigma lower limit (FluxCorrLo2t) (stat.error)
  (10)B2_FluxCMedT mW/m2 Absorption corrected flux in observed 2.3-5 keV, 2sigma upper limit (FluxCorrUp2t) (stat.error)
  (10)b_GammaMed  power-law slope, percentile lower limit (Gamma_Lo) (arith.grad;stat.min)
  (10)B_GammaMed  power-law slope, percentile upper limit (Gamma_Up) (arith.grad;stat.max)
  (10)b_lognHMed [cm-2] log AGN column density, percentile lower limit (lognH_Lo) (phys.columnDensity;stat.min)
  (10)B_lognHMed [cm-2] log AGN column density, percentile upper limit (lognH_Up) (phys.columnDensity;stat.max)
  (10)b_logPowNMed [ph/keV/cm2/s]log power-law normalization, percentile lower limit (logPowNorm_Lo) (arith.zp;arith.ratio)
  (10)B_logPowNMed [ph/keV/cm2/s]log power-law normalization, percentile upper limit (logPowNorm_Up) (arith.zp;arith.ratio)
  (10)b_logBkgNMed  log background normalization, percentile lower limit (logBkgNorm_Lo) (instr.background;arith.ratio)

ALL cols
    
(n) indicates a possible blank or NULL column(i)indexed column
  (10)B_logBkgNMed  log background normalization, percentile upper limit (logBkgNorm_Up) (instr.background;arith.ratio)

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/V-3.err (2024-09-20T20:32:31)
-3
-source=J/A+A/661/A5
-ref=VIZ66eddbdf1b34c4
elapse time 0

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


Contents of error file (/tmp/V-3.err):
CDSportal=http://cdsportal.u-strasbg.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=8ae129b2b46e
HOSTTYPE=x86_64-linux
HTTP_ACCEPT=*/*
HTTP_ACCEPT_ENCODING=gzip, br, zstd, deflate
HTTP_CONNECTION=Keep-Alive
HTTP_HOST=cds:8082
HTTP_USER_AGENT=Mozilla/5.0 AppleWebKit/537.36 (KHTML, like Gecko; compatible; ClaudeBot/1.0; +claudebot@anthropic.com)
HTTP_X_FORWARDED_FOR=3.133.124.145
HTTP_X_FORWARDED_HOST=viz-beta.u-strasbg.fr
HTTP_X_FORWARDED_SERVER=viz-beta.u-strasbg.fr
LC_ALL=C
LD_LIBRARY_PATH=/srv/httpd/../lib:/srv/lib:/usr/local/lib:/usr/lib
LOGNAME=root
MACHTYPE=x86_64
METADB=metaviz@VIZIR 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
QMOCCMD=.ext-tsv/qat2s_asu --out.form tsv --noheader --out.max=999999999 --source=%s --moc=%s
QUERY_STRING=-source=J%2FA%2BA%2F661%2FA5
REMOTE_ADDR=130.79.128.30
REMOTE_PORT=38710
REQUEST_METHOD=GET
REQUEST_SCHEME=http
REQUEST_URI=/local/viz-bin/VizieR-3?-source=J%2FA%2BA%2F661%2FA5
SCRIPT_FILENAME=/srv/httpd/local/cgi/VizieR-3
SCRIPT_NAME=/local/viz-bin/VizieR-3
SERVER_ADDR=172.17.0.2
SERVER_ADMIN=gilles.landais@astro.u-strasbg.fr
SERVER_NAME=cds
SERVER_PORT=8082
SERVER_PROTOCOL=HTTP/1.1
SERVER_SIGNATURE=
SERVER_SOFTWARE=Apache/2.4.57 (Unix)
SESAME_SERVER=glu
SHLVL=1
USER=root
VENDOR=unknown
VSEARCH_HOST=cdsarc.cds.unistra.fr
VSEARCH_REDIRECT=http://cdsarc.cds.unistra.fr
Vaccess=*
Vprog=/srv/httpd/bin/vizier
Vprog_ls=-rwxr-xr-x 1 root root 963216 Sep 12 07:38 /srv/httpd/bin/vizier
Vroot=/srv/httpd

################################################################
....(in): -source=J/A+A/661/A5
################################################################

....Trying '/srv/httpd/interfaces' => OK
....Trying '/srv/httpd/interfaces' => 3
....db1_interfaces(/srv/httpd/interfaces)
----db1_open(metaviz@VIZIR) gives: 0
----Open server: 130.79.128.5, port 5432 (type postgres base vizier)
----db1_query(0 'metaviz@VIZIR'):
[1726864351]   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@VIZIR'):
[1726864351]   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@VIZIR'):
[1726864351]   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@VIZIR'):
[1726864351]   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@VIZIR'):
[1726864351]   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@VIZIR'):
[1726864351]   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@VIZIR'):
[1726864351]   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@VIZIR'):
[1726864351]   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@VIZIR'):
[1726864351]   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@VIZIR'):
[1726864351]   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@VIZIR'):
[1726864351]   Select MAX(dbaid) as nlogins from METAdba
----db1_reset(0 'metaviz@VIZIR')
----db1_query(0 'metaviz@VIZIR'):
[1726864351]   Select MAX(famid) as mUCD1 from METAfam
----db1_reset(0 'metaviz@VIZIR')
----db1_query(0 'metaviz@VIZIR'):
[1726864351]   Select hstid, flag from METAhst where name='8ae129b2b46e.astro.unistra.fr'
----db1_query(0 'metaviz@VIZIR'):
[1726864351]   Select authid, name From METAauth where authid=0
----db1_query(0 'metaviz@VIZIR'):
[1726864351]   Select name, dbname, catid, tabid, flags, equinox, epoch, explain, dbaid, cooframe, release, records, notid, comment, status, cooprec, morexplain From METAtab where name = 'J/A+A/661/A5' and catid in (select catid from METAcat where catid=METAtab.catid and (authid=0))
----db1_query(0 'metaviz@VIZIR'):
[1726864351]   Select name, catid, title, kslot, explain, status, popu, authid, bibcode, flags, doi, orcid, authors From METAcat where catid=36610005 and (authid=0)
----db1_reset(0 'metaviz@VIZIR')
----db1_query(0 'metaviz@VIZIR'):
[1726864351]   Select name, dbname, catid, tabid, flags, equinox, epoch, explain, dbaid, cooframe, release, records, notid, comment, status, cooprec, morexplain From METAtab Where catid=36610005 order by tabid
----db1_query(0 'metaviz@VIZIR'):
[1726864351]   select login from METAdba where dbaid=41
----db1_reset(0 'metaviz@VIZIR')
----db1_query(0 'metaviz@VIZIR'):
[1726864351]   select k.catid,k.kwdid from METAkwd k where catid=36610005 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@VIZIR'):
[1726864351]   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@VIZIR')
----db1_query(0 'metaviz@VIZIR'):
[1726864351]   Select catid, morid, text From METAmor where catid=0 order by morid
----db1_query(0 'metaviz@VIZIR'):
[1726864351]   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@VIZIR'):
[1726864351]   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@VIZIR'):
[1726864351]   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@VIZIR'):
[1726864351]   Select colid, photid, fltrid, photid1, fltrid1 From METAsed where catid=0 and tabid=11
----db1_query(0 'metaviz@VIZIR'):
[1726864351]   select login from METAdba where login like 'large_tables%'
----db1_query(0 'metaviz@VIZIR'):
[1726864351]   Select name, kwdid, kwdkm, kwdno, Nk From METAkwdef
#...meta_close(1): retrieved 146/0 tuples [tested=146]
----db1_query(0 'metaviz@VIZIR'):
[1726864351]   Select name, dbname, catid, tabid, famid, type, dbtype, length, flags, fmt, unit, dbunit, explain, colid, notid, morid, ucdid, vounit, morexplain From METAcol where catid=36610005 order by catid,tabid,colid
----db1_query(0 'metaviz@VIZIR'):
[1726864351]   Select catid, morid, text From METAmor where catid=36610005 order by morid
----db1_query(0 'metaviz@VIZIR'):
[1726864351]   Select colid, photid, fltrid, photid1, fltrid1 From METAsed where catid=36610005 and tabid=1
----db1_query(0 'metaviz@VIZIR'):
[1726864351]   Select system, filter, famid, photid, fltrid, freq0, dfreq, Fmag0 From METAfilter where photid=713 and fltrid=2
----db1_query(0 'metaviz@VIZIR'):
[1726864351]   Select system, filter, famid, photid, fltrid, freq0, dfreq, Fmag0 From METAfilter where photid=713 and fltrid=1
----db1_query(0 'metaviz@VIZIR'):
[1726864351]   Select colid, photid, fltrid, photid1, fltrid1 From METAsed where catid=36610005 and tabid=2
----db1_query(0 'metaviz@VIZIR'):
[1726864351]   Select colid, photid, fltrid, photid1, fltrid1 From METAsed where catid=36610005 and tabid=3
----db1_query(0 'metaviz@VIZIR'):
[1726864351]   Select colid, photid, fltrid, photid1, fltrid1 From METAsed where catid=36610005 and tabid=4
----db1_query(0 'metaviz@VIZIR'):
[1726864351]   Select colid, photid, fltrid, photid1, fltrid1 From METAsed where catid=36610005 and tabid=5
----db1_query(0 'metaviz@VIZIR'):
[1726864351]   Select colid, photid, fltrid, photid1, fltrid1 From METAsed where catid=36610005 and tabid=6
----db1_query(0 'metaviz@VIZIR'):
[1726864351]   Select colid, photid, fltrid, photid1, fltrid1 From METAsed where catid=36610005 and tabid=7
----db1_query(0 'metaviz@VIZIR'):
[1726864351]   Select colid, photid, fltrid, photid1, fltrid1 From METAsed where catid=36610005 and tabid=8
----db1_query(0 'metaviz@VIZIR'):
[1726864351]   Select colid, photid, fltrid, photid1, fltrid1 From METAsed where catid=36610005 and tabid=9
----db1_query(0 'metaviz@VIZIR'):
[1726864351]   Select colid, photid, fltrid, photid1, fltrid1 From METAsed where catid=36610005 and tabid=10

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

....DisplayFile(/srv/httpd/VizieR/+menu.htx) ****Non-existant file****
----db1_query(0 'metaviz@VIZIR'):
[1726864351]   Select name, dbname, catid, tabid, famid, type, dbtype, length, flags, fmt, unit, dbunit, explain, colid, notid, morid, ucdid, vounit, morexplain From METAcol where catid=36610005 and  tabid=1 order by colid
----db1_query(0 'metaviz@VIZIR'):
[1726864351]   Select colid, photid, fltrid, photid1, fltrid1 From METAsed where catid=36610005 and tabid=1
----db1_query(0 'metaviz@VIZIR'):
[1726864351]   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@VIZIR')
----db1_query(0 'metaviz@VIZIR'):
[1726864351]   Select catid, morid, text From METAmor where catid=0 order by morid
----db1_query(0 'metaviz@VIZIR'):
[1726864351]   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@VIZIR'):
[1726864351]   Select colid, photid, fltrid, photid1, fltrid1 From METAsed where catid=0 and tabid=52
----db1_query(0 'metaviz@VIZIR'):
[1726864351]   select login from METAdba where login like 'large_tables%'
----db1_query(0 'metaviz@VIZIR'):
[1726864351]   Select catid, tabid, colid, time_syst_id, scale_name, frame_name, time_systematic_err, name, description, time_offset, time_uncertainty, time_representation, id, id From METAtime where catid=36610005 and tabid=1
#...meta_close(1): retrieved 0/1000 tuples [tested=0]
----db1_query(0 'metaviz@VIZIR'):
[1726864351]   select login from METAdba where login like 'large_tables%'
----db1_query(0 'metaviz@VIZIR'):
[1726864351]   Select catid, tabid, colid, time_syst_id, scale_name, frame_name, time_systematic_err, name, description, time_offset, time_uncertainty, time_representation, id, id From METAtime where catid=36610005 and tabid=1
#...meta_close(1): retrieved 0/1000 tuples [tested=0]
----db1_query(0 'metaviz@VIZIR'):
[1726864351]   Select catid, morid, text From METAmor where catid=36610005 order by morid
----db1_query(0 'metaviz@VIZIR'):
[1726864351]   Select name, dbname, catid, tabid, famid, type, dbtype, length, flags, fmt, unit, dbunit, explain, colid, notid, morid, ucdid, vounit, morexplain From METAcol where catid=36610005 and  tabid=2 order by colid
----db1_query(0 'metaviz@VIZIR'):
[1726864351]   Select colid, photid, fltrid, photid1, fltrid1 From METAsed where catid=36610005 and tabid=2
----db1_query(0 'metaviz@VIZIR'):
[1726864351]   select login from METAdba where login like 'large_tables%'
----db1_query(0 'metaviz@VIZIR'):
[1726864351]   Select catid, tabid, colid, time_syst_id, scale_name, frame_name, time_systematic_err, name, description, time_offset, time_uncertainty, time_representation, id, id From METAtime where catid=36610005 and tabid=2
#...meta_close(1): retrieved 0/1000 tuples [tested=0]
----db1_query(0 'metaviz@VIZIR'):
[1726864351]   select login from METAdba where login like 'large_tables%'
----db1_query(0 'metaviz@VIZIR'):
[1726864351]   Select catid, tabid, colid, time_syst_id, scale_name, frame_name, time_systematic_err, name, description, time_offset, time_uncertainty, time_representation, id, id From METAtime where catid=36610005 and tabid=2
#...meta_close(1): retrieved 0/1000 tuples [tested=0]
----db1_query(0 'metaviz@VIZIR'):
[1726864351]   Select name, dbname, catid, tabid, famid, type, dbtype, length, flags, fmt, unit, dbunit, explain, colid, notid, morid, ucdid, vounit, morexplain From METAcol where catid=36610005 and  tabid=3 order by colid
----db1_query(0 'metaviz@VIZIR'):
[1726864351]   Select colid, photid, fltrid, photid1, fltrid1 From METAsed where catid=36610005 and tabid=3
----db1_query(0 'metaviz@VIZIR'):
[1726864351]   select login from METAdba where login like 'large_tables%'
----db1_query(0 'metaviz@VIZIR'):
[1726864351]   Select catid, tabid, colid, time_syst_id, scale_name, frame_name, time_systematic_err, name, description, time_offset, time_uncertainty, time_representation, id, id From METAtime where catid=36610005 and tabid=3
#...meta_close(1): retrieved 0/1000 tuples [tested=0]
----db1_query(0 'metaviz@VIZIR'):
[1726864351]   select login from METAdba where login like 'large_tables%'
----db1_query(0 'metaviz@VIZIR'):
[1726864351]   Select catid, tabid, colid, time_syst_id, scale_name, frame_name, time_systematic_err, name, description, time_offset, time_uncertainty, time_representation, id, id From METAtime where catid=36610005 and tabid=3
#...meta_close(1): retrieved 0/1000 tuples [tested=0]
----db1_query(0 'metaviz@VIZIR'):
[1726864351]   Select name, dbname, catid, tabid, famid, type, dbtype, length, flags, fmt, unit, dbunit, explain, colid, notid, morid, ucdid, vounit, morexplain From METAcol where catid=36610005 and  tabid=4 order by colid
----db1_query(0 'metaviz@VIZIR'):
[1726864351]   Select colid, photid, fltrid, photid1, fltrid1 From METAsed where catid=36610005 and tabid=4
----db1_query(0 'metaviz@VIZIR'):
[1726864351]   select login from METAdba where login like 'large_tables%'
----db1_query(0 'metaviz@VIZIR'):
[1726864351]   Select catid, tabid, colid, time_syst_id, scale_name, frame_name, time_systematic_err, name, description, time_offset, time_uncertainty, time_representation, id, id From METAtime where catid=36610005 and tabid=4
#...meta_close(1): retrieved 0/1000 tuples [tested=0]
----db1_query(0 'metaviz@VIZIR'):
[1726864351]   select login from METAdba where login like 'large_tables%'
----db1_query(0 'metaviz@VIZIR'):
[1726864351]   Select catid, tabid, colid, time_syst_id, scale_name, frame_name, time_systematic_err, name, description, time_offset, time_uncertainty, time_representation, id, id From METAtime where catid=36610005 and tabid=4
#...meta_close(1): retrieved 0/1000 tuples [tested=0]
----db1_query(0 'metaviz@VIZIR'):
[1726864351]   Select name, dbname, catid, tabid, famid, type, dbtype, length, flags, fmt, unit, dbunit, explain, colid, notid, morid, ucdid, vounit, morexplain From METAcol where catid=36610005 and  tabid=5 order by colid
----db1_query(0 'metaviz@VIZIR'):
[1726864351]   Select colid, photid, fltrid, photid1, fltrid1 From METAsed where catid=36610005 and tabid=5
----db1_query(0 'metaviz@VIZIR'):
[1726864351]   select login from METAdba where login like 'large_tables%'
----db1_query(0 'metaviz@VIZIR'):
[1726864351]   Select catid, tabid, colid, time_syst_id, scale_name, frame_name, time_systematic_err, name, description, time_offset, time_uncertainty, time_representation, id, id From METAtime where catid=36610005 and tabid=5
#...meta_close(1): retrieved 0/1000 tuples [tested=0]
----db1_query(0 'metaviz@VIZIR'):
[1726864351]   select login from METAdba where login like 'large_tables%'
----db1_query(0 'metaviz@VIZIR'):
[1726864351]   Select catid, tabid, colid, time_syst_id, scale_name, frame_name, time_systematic_err, name, description, time_offset, time_uncertainty, time_representation, id, id From METAtime where catid=36610005 and tabid=5
#...meta_close(1): retrieved 0/1000 tuples [tested=0]
----db1_query(0 'metaviz@VIZIR'):
[1726864351]   Select name, dbname, catid, tabid, famid, type, dbtype, length, flags, fmt, unit, dbunit, explain, colid, notid, morid, ucdid, vounit, morexplain From METAcol where catid=36610005 and  tabid=6 order by colid
----db1_query(0 'metaviz@VIZIR'):
[1726864351]   Select colid, photid, fltrid, photid1, fltrid1 From METAsed where catid=36610005 and tabid=6
----db1_query(0 'metaviz@VIZIR'):
[1726864351]   select login from METAdba where login like 'large_tables%'
----db1_query(0 'metaviz@VIZIR'):
[1726864351]   Select catid, tabid, colid, time_syst_id, scale_name, frame_name, time_systematic_err, name, description, time_offset, time_uncertainty, time_representation, id, id From METAtime where catid=36610005 and tabid=6
#...meta_close(1): retrieved 0/1000 tuples [tested=0]
----db1_query(0 'metaviz@VIZIR'):
[1726864351]   select login from METAdba where login like 'large_tables%'
----db1_query(0 'metaviz@VIZIR'):
[1726864351]   Select catid, tabid, colid, time_syst_id, scale_name, frame_name, time_systematic_err, name, description, time_offset, time_uncertainty, time_representation, id, id From METAtime where catid=36610005 and tabid=6
#...meta_close(1): retrieved 0/1000 tuples [tested=0]
----db1_query(0 'metaviz@VIZIR'):
[1726864351]   Select name, dbname, catid, tabid, famid, type, dbtype, length, flags, fmt, unit, dbunit, explain, colid, notid, morid, ucdid, vounit, morexplain From METAcol where catid=36610005 and  tabid=7 order by colid
----db1_query(0 'metaviz@VIZIR'):
[1726864351]   Select colid, photid, fltrid, photid1, fltrid1 From METAsed where catid=36610005 and tabid=7
----db1_query(0 'metaviz@VIZIR'):
[1726864351]   select login from METAdba where login like 'large_tables%'
----db1_query(0 'metaviz@VIZIR'):
[1726864351]   Select catid, tabid, colid, time_syst_id, scale_name, frame_name, time_systematic_err, name, description, time_offset, time_uncertainty, time_representation, id, id From METAtime where catid=36610005 and tabid=7
#...meta_close(1): retrieved 0/1000 tuples [tested=0]
----db1_query(0 'metaviz@VIZIR'):
[1726864351]   select login from METAdba where login like 'large_tables%'
----db1_query(0 'metaviz@VIZIR'):
[1726864351]   Select catid, tabid, colid, time_syst_id, scale_name, frame_name, time_systematic_err, name, description, time_offset, time_uncertainty, time_representation, id, id From METAtime where catid=36610005 and tabid=7
#...meta_close(1): retrieved 0/1000 tuples [tested=0]
----db1_query(0 'metaviz@VIZIR'):
[1726864351]   Select name, dbname, catid, tabid, famid, type, dbtype, length, flags, fmt, unit, dbunit, explain, colid, notid, morid, ucdid, vounit, morexplain From METAcol where catid=36610005 and  tabid=8 order by colid
----db1_query(0 'metaviz@VIZIR'):
[1726864351]   Select colid, photid, fltrid, photid1, fltrid1 From METAsed where catid=36610005 and tabid=8
----db1_query(0 'metaviz@VIZIR'):
[1726864351]   select login from METAdba where login like 'large_tables%'
----db1_query(0 'metaviz@VIZIR'):
[1726864351]   Select catid, tabid, colid, time_syst_id, scale_name, frame_name, time_systematic_err, name, description, time_offset, time_uncertainty, time_representation, id, id From METAtime where catid=36610005 and tabid=8
#...meta_close(1): retrieved 0/1000 tuples [tested=0]
----db1_query(0 'metaviz@VIZIR'):
[1726864351]   select login from METAdba where login like 'large_tables%'
----db1_query(0 'metaviz@VIZIR'):
[1726864351]   Select catid, tabid, colid, time_syst_id, scale_name, frame_name, time_systematic_err, name, description, time_offset, time_uncertainty, time_representation, id, id From METAtime where catid=36610005 and tabid=8
#...meta_close(1): retrieved 0/1000 tuples [tested=0]
----db1_query(0 'metaviz@VIZIR'):
[1726864351]   Select name, dbname, catid, tabid, famid, type, dbtype, length, flags, fmt, unit, dbunit, explain, colid, notid, morid, ucdid, vounit, morexplain From METAcol where catid=36610005 and  tabid=9 order by colid
----db1_query(0 'metaviz@VIZIR'):
[1726864351]   Select colid, photid, fltrid, photid1, fltrid1 From METAsed where catid=36610005 and tabid=9
----db1_query(0 'metaviz@VIZIR'):
[1726864351]   select login from METAdba where login like 'large_tables%'
----db1_query(0 'metaviz@VIZIR'):
[1726864351]   Select catid, tabid, colid, time_syst_id, scale_name, frame_name, time_systematic_err, name, description, time_offset, time_uncertainty, time_representation, id, id From METAtime where catid=36610005 and tabid=9
#...meta_close(1): retrieved 0/1000 tuples [tested=0]
----db1_query(0 'metaviz@VIZIR'):
[1726864351]   select login from METAdba where login like 'large_tables%'
----db1_query(0 'metaviz@VIZIR'):
[1726864351]   Select catid, tabid, colid, time_syst_id, scale_name, frame_name, time_systematic_err, name, description, time_offset, time_uncertainty, time_representation, id, id From METAtime where catid=36610005 and tabid=9
#...meta_close(1): retrieved 0/1000 tuples [tested=0]
----db1_query(0 'metaviz@VIZIR'):
[1726864351]   Select name, dbname, catid, tabid, famid, type, dbtype, length, flags, fmt, unit, dbunit, explain, colid, notid, morid, ucdid, vounit, morexplain From METAcol where catid=36610005 and  tabid=10 order by colid
----db1_query(0 'metaviz@VIZIR'):
[1726864351]   Select colid, photid, fltrid, photid1, fltrid1 From METAsed where catid=36610005 and tabid=10
----db1_query(0 'metaviz@VIZIR'):
[1726864351]   select login from METAdba where login like 'large_tables%'
----db1_query(0 'metaviz@VIZIR'):
[1726864351]   Select catid, tabid, colid, time_syst_id, scale_name, frame_name, time_systematic_err, name, description, time_offset, time_uncertainty, time_representation, id, id From METAtime where catid=36610005 and tabid=10
#...meta_close(1): retrieved 0/1000 tuples [tested=0]
----db1_query(0 'metaviz@VIZIR'):
[1726864351]   select login from METAdba where login like 'large_tables%'
----db1_query(0 'metaviz@VIZIR'):
[1726864351]   Select catid, tabid, colid, time_syst_id, scale_name, frame_name, time_systematic_err, name, description, time_offset, time_uncertainty, time_representation, id, id From METAtime where catid=36610005 and tabid=10
#...meta_close(1): retrieved 0/1000 tuples [tested=0]
++++status=3 0
----db1_query(0 'metaviz@VIZIR'):
[1726864351]   Select name, catid, title, kslot, explain, status, popu, authid, bibcode, flags, doi, orcid, authors From METAcat where catid=36610005 and (authid=0)
----db1_reset(0 'metaviz@VIZIR')
----db1_query(0 'metaviz@VIZIR'):
[1726864351]   Select name, dbname, catid, tabid, flags, equinox, epoch, explain, dbaid, cooframe, release, records, notid, comment, status, cooprec, morexplain From METAtab Where catid=36610005 order by tabid
----db1_query(0 'metaviz@VIZIR'):
[1726864351]   Select idori, kwdid, name, explain From METAorigin
----db1_query(0 'metaviz@VIZIR'):
[1726864351]   Select ucdid, name From METAucd where ucdid>=0
----db1_exec(0 'metaviz@VIZIR'):
[1726864351]    Update METAhit set etime=780179551,  Ncalls = Ncalls+1 where catid=36610005 and hstid=-1 and btime=778420800
------------(1 records affected)
----db1_exec(0 'metaviz@VIZIR'):
[1726864351]    UPDATE METAstat set nlocal=nlocal+1, tlocal=780179551 Where phase=3 and catid=36610005
------------(1 records affected)
----db1_exec(0 'metaviz@VIZIR'):
[1726864351]    Update METAhit set etime=780179551,  N2list = N2list+2 where catid=36610005 and hstid=-1 and btime=778420800
------------(1 records affected)
----db1_exec(0 'metaviz@VIZIR'):
[1726864351]    Update METAhit set etime=780179551,  N2list = N2list+2 where catid=36610005 and hstid=-1 and btime=778420800
------------(1 records affected)
----db1_exec(0 'metaviz@VIZIR'):
[1726864351]    UPDATE METAstat set nlocal=nlocal+1, tlocal=780179551 Where phase=3 and catid=36610005
------------(1 records affected)
----db1_exec(0 'metaviz@VIZIR'):
[1726864351]    Update METAhit set etime=780179551,  N2list = N2list+2 where catid=36610005 and hstid=-1 and btime=778420800
------------(1 records affected)
----db1_exec(0 'metaviz@VIZIR'):
[1726864351]    Update METAhit set etime=780179551,  N2list = N2list+2 where catid=36610005 and hstid=-1 and btime=778420800
------------(1 records affected)
----db1_exec(0 'metaviz@VIZIR'):
[1726864351]    UPDATE METAstat set nlocal=nlocal+1, tlocal=780179551 Where phase=3 and catid=36610005
------------(1 records affected)
----db1_exec(0 'metaviz@VIZIR'):
[1726864351]    Update METAhit set etime=780179551,  N2list = N2list+2 where catid=36610005 and hstid=-1 and btime=778420800
------------(1 records affected)
----db1_exec(0 'metaviz@VIZIR'):
[1726864351]    Update METAhit set etime=780179551,  N2list = N2list+2 where catid=36610005 and hstid=-1 and btime=778420800
------------(1 records affected)
----db1_exec(0 'metaviz@VIZIR'):
[1726864351]    UPDATE METAstat set nlocal=nlocal+1, tlocal=780179551 Where phase=3 and catid=36610005
------------(1 records affected)
----db1_exec(0 'metaviz@VIZIR'):
[1726864351]    Update METAhit set etime=780179551,  N2list = N2list+2 where catid=36610005 and hstid=-1 and btime=778420800
------------(1 records affected)
----db1_exec(0 'metaviz@VIZIR'):
[1726864351]    Update METAhit set etime=780179551,  N2list = N2list+2 where catid=36610005 and hstid=-1 and btime=778420800
------------(1 records affected)
----db1_exec(0 'metaviz@VIZIR'):
[1726864351]    UPDATE METAstat set nlocal=nlocal+1, tlocal=780179551 Where phase=3 and catid=36610005
------------(1 records affected)
----db1_query(0 'metaviz@VIZIR'):
[1726864351]   Select famid, name From METAfam where famid>=0
....show_tuple: show_status = (136, 569, 0, 0, 20)
====Tuple 'J/A+A/661/A5' from 10/0 tables:
    #36610005.1 'J/A+A/661/A5/table1' 67/80 columns
    #36610005.2 'J/A+A/661/A5/table2' 56/72 columns
    #36610005.3 'J/A+A/661/A5/table3' 61/72 columns
    #36610005.4 'J/A+A/661/A5/table4' 89/104 columns
    #36610005.5 'J/A+A/661/A5/table5' 106/120 columns
    #36610005.6 'J/A+A/661/A5/table6' 107/120 columns
    #36610005.7 'J/A+A/661/A5/table7' 77/88 columns
    #36610005.8 'J/A+A/661/A5/table8' 68/80 columns
    #36610005.9 'J/A+A/661/A5/table9' 44/56 columns
    #36610005.10 'J/A+A/661/A5/table10' 50/64 columns
[000003ff] col#000 v000 OA002 J/A+A/661/A5/table1*recno           
[000003ff] col#001 v000 O2043 J/A+A/661/A5/table1*ID-SRC          
[00000001] col#002 v311 O1023 J/A+A/661/A5/table1*RAc             
[00000001] col#003 v011 O1023 J/A+A/661/A5/table1*DEc             
[00000003] col#004 v001 O0000 J/A+A/661/A5/table1*DetLike         
[00000003] col#005 v001 O0000 J/A+A/661/A5/table1*inArea90        
[00000001] col#006 v004 O4003 J/A+A/661/A5/table1*CTPLS8          
[00000001] col#007 v311 O0000 J/A+A/661/A5/table1*RALdeg          
[00000001] col#008 v011 O0000 J/A+A/661/A5/table1*DELdeg          
[00000001] col#009 v000 O0040 J/A+A/661/A5/table1*CTPqual         
[00000001] col#010 v000 O0040 J/A+A/661/A5/table1*CTPClass        
[00000001] col#011 v001 O0000 J/A+A/661/A5/table1*CTPz            
[00000001] col#012 v000 O0040 J/A+A/661/A5/table1*CTPzgrade       
[00000001] col#013 v000 O0040 J/A+A/661/A5/table1*inKiDSFlag      
[00000001] col#014 v000 O0040 J/A+A/661/A5/table1*LxModel         
[00000009] col#015 v000 O0040 J/A+A/661/A5/table1*NHclass         
[00000003] col#016 v000 O0040 J/A+A/661/A5/table1*FSModel         
[00000003] col#017 v000 O0040 J/A+A/661/A5/table1*FHModel         
[00000003] col#018 v001 O0000 J/A+A/661/A5/table1*galNH           
[00000003] col#019 v001 O0000 J/A+A/661/A5/table1*galNHI          
[00000003] col#020 v001 O0000 J/A+A/661/A5/table1*SrcCts          
[00000009] col#021 v001 O0003 J/A+A/661/A5/table1*FluxcMedS       
[00000009] col#022 v001 O0000 J/A+A/661/A5/table1*b_FluxcS        
[00000009] col#023 v001 O0000 J/A+A/661/A5/table1*B_FluxcS        
[00000009] col#024 v001 O0003 J/A+A/661/A5/table1*FluxcMedT       
[00000009] col#025 v001 O0000 J/A+A/661/A5/table1*b_FluxcT        
[00000009] col#026 v001 O0000 J/A+A/661/A5/table1*B_FluxcT        
[000000f9] col#027 v001 O0003 J/A+A/661/A5/table1*FluxIMedS       
[000000f9] col#028 v001 O0000 J/A+A/661/A5/table1*b_FluxIS        
[000000f9] col#029 v001 O0000 J/A+A/661/A5/table1*B_FluxIS        
[000000f9] col#030 v001 O0003 J/A+A/661/A5/table1*FluxIMed2keV    
[000000f9] col#031 v001 O0000 J/A+A/661/A5/table1*b_FluxI2keV     
[000000f9] col#032 v001 O0000 J/A+A/661/A5/table1*B_FluxI2keV     
[000000f9] col#033 v001 O0003 J/A+A/661/A5/table1*LumIMedS        
[000000f9] col#034 v001 O0000 J/A+A/661/A5/table1*b_LumIS         
[000000f9] col#035 v001 O0000 J/A+A/661/A5/table1*B_LumIS         
[000000f9] col#036 v001 O0003 J/A+A/661/A5/table1*LumIMed2keV     
[000000f9] col#037 v001 O0000 J/A+A/661/A5/table1*b_LumI2keV      
[000000f9] col#038 v001 O0000 J/A+A/661/A5/table1*B_LumI2keV      
[000001ff] col#039 v001 O0003 J/A+A/661/A5/table1*FluxObsMedS     
[000001ff] col#040 v001 O0000 J/A+A/661/A5/table1*b_FluxObsS      
[000001ff] col#041 v001 O0000 J/A+A/661/A5/table1*B_FluxObsS      
[000002ff] col#042 v001 O0003 J/A+A/661/A5/table1*FluxObsMedT     
[000002ff] col#043 v001 O0000 J/A+A/661/A5/table1*b_FluxObsT      
[000002ff] col#044 v001 O0000 J/A+A/661/A5/table1*B_FluxObsT      
[00000001] col#045 v001 O0000 J/A+A/661/A5/table1*lognHKLm1       
[00000001] col#046 v001 O0000 J/A+A/661/A5/table1*b_lognHm1       
[00000001] col#047 v001 O0000 J/A+A/661/A5/table1*B_lognHm1       
[00000001] col#048 v001 O0000 J/A+A/661/A5/table1*lognHMedm1      
[00000001] col#049 v001 O0000 J/A+A/661/A5/table1*GammaKLm3       
[00000001] col#050 v001 O0000 J/A+A/661/A5/table1*b_GammaHm3      
[00000001] col#051 v001 O0000 J/A+A/661/A5/table1*B_GammaHm3      
[00000001] col#052 v001 O0000 J/A+A/661/A5/table1*GammaMedm3      
[00000001] col#053 v001 O0000 J/A+A/661/A5/table1*logZm0          
[00000001] col#054 v001 O0000 J/A+A/661/A5/table1*logZm1          
[00000001] col#055 v001 O0000 J/A+A/661/A5/table1*logZm2          
[00000001] col#056 v001 O0000 J/A+A/661/A5/table1*logZm3          
[00000001] col#057 v001 O0000 J/A+A/661/A5/table1*logZm4          
[00000001] col#058 v001 O0000 J/A+A/661/A5/table1*logZm5          
[00000001] col#059 v001 O0083 J/A+A/661/A5/table1*L2500           
[00000001] col#060 v001 O0083 J/A+A/661/A5/table1*L5100           
[00000001] col#061 v001 O0083 J/A+A/661/A5/table1*W1mag           
[00000001] col#062 v001 O0080 J/A+A/661/A5/table1*e_W1mag         
[00000001] col#063 v001 O0083 J/A+A/661/A5/table1*W2mag           
[00000001] col#064 v001 O0080 J/A+A/661/A5/table1*e_W2mag         
[000003ff] col#065 v004 OA051 J/A+A/661/A5/table1*PaperI          
[000003ff] col#066 v004 OA051 J/A+A/661/A5/table1*PaperII         
[000003ff] col#000 v000 OA002 J/A+A/661/A5/table2*recno           
[000003ff] col#001 v000 O2043 J/A+A/661/A5/table2*ID-SRC          
[00000002] col#002 v311 O0003 J/A+A/661/A5/table2*RAcdeg          
[00000002] col#003 v011 O0003 J/A+A/661/A5/table2*DEcdeg          
[00000003] col#004 v001 O0000 J/A+A/661/A5/table2*DetLike         
[00000002] col#005 v001 O0000 J/A+A/661/A5/table2*ExtLike         
[00000003] col#006 v001 O0000 J/A+A/661/A5/table2*inArea90        
[00000003] col#007 v001 O0000 J/A+A/661/A5/table2*galNH           
[00000003] col#008 v001 O0000 J/A+A/661/A5/table2*galNHI          
[00000002] col#009 v001 O0000 J/A+A/661/A5/table2*ExpTime         
[00000003] col#010 v001 O0000 J/A+A/661/A5/table2*SrcCts          
[00000002] col#011 v311 O1023 J/A+A/661/A5/table2*RAJ2000         
[00000002] col#012 v011 O1023 J/A+A/661/A5/table2*DEJ2000         
[00000002] col#013 v000 O0040 J/A+A/661/A5/table2*Rad             
[00000002] col#014 v000 O0040 J/A+A/661/A5/table2*Ann1            
[00000002] col#015 v000 O0040 J/A+A/661/A5/table2*Ann2            
[00000002] col#016 v001 O0000 J/A+A/661/A5/table2*RegArea         
[00000002] col#017 v001 O0000 J/A+A/661/A5/table2*Backscal        
[00000002] col#018 v001 O0000 J/A+A/661/A5/table2*BackscalBkg     
[00000003] col#019 v000 O0040 J/A+A/661/A5/table2*FSModel         
[00000003] col#020 v000 O0040 J/A+A/661/A5/table2*FHModel         
[00000002] col#021 v001 O0003 J/A+A/661/A5/table2*Rate0.2-2.3     
[00000002] col#022 v001 O0000 J/A+A/661/A5/table2*e_Rate0.2-2.3   
[00000002] col#023 v001 O0003 J/A+A/661/A5/table2*Rate0.2-0.5     
[00000002] col#024 v001 O0000 J/A+A/661/A5/table2*e_Rate0.2-0.5   
[00000002] col#025 v001 O0003 J/A+A/661/A5/table2*Rate0.5-1       
[00000002] col#026 v001 O0000 J/A+A/661/A5/table2*e_Rate0.5-1     
[00000002] col#027 v001 O0003 J/A+A/661/A5/table2*Rate1-2         
[00000002] col#028 v001 O0000 J/A+A/661/A5/table2*e_Rate1-2       
[00000002] col#029 v001 O0003 J/A+A/661/A5/table2*Rate2-4.5       
[00000002] col#030 v001 O0000 J/A+A/661/A5/table2*e_Rate2-4.5     
[00000002] col#031 v001 O0003 J/A+A/661/A5/table2*Rate2.3-5       
[00000002] col#032 v001 O0000 J/A+A/661/A5/table2*e_Rate2.3-5     
[00000002] col#033 v001 O0003 J/A+A/661/A5/table2*Rate5-8         
[00000002] col#034 v001 O0000 J/A+A/661/A5/table2*e_Rate5-8       
[00000002] col#035 v001 O0000 J/A+A/661/A5/table2*BkgCts0.2-0.6   
[00000002] col#036 v001 O0000 J/A+A/661/A5/table2*e_BkgCts0.2-0.6 
[00000002] col#037 v001 O0000 J/A+A/661/A5/table2*BkgCts0.6-2.3   
[00000002] col#038 v001 O0000 J/A+A/661/A5/table2*e_BkgCts0.6-2.3 
[00000002] col#039 v001 O0000 J/A+A/661/A5/table2*BkgCts2.3-5     
[00000002] col#040 v001 O0000 J/A+A/661/A5/table2*e_BkgCts2.3-5   
[00000002] col#041 v001 O0000 J/A+A/661/A5/table2*BkgCts5-8       
[00000002] col#042 v001 O0000 J/A+A/661/A5/table2*e_BkgCts5-8     
[00000002] col#043 v001 O0000 J/A+A/661/A5/table2*PSFCor0.2-0.5   
[00000002] col#044 v001 O0000 J/A+A/661/A5/table2*PSFCor0.5-1     
[00000002] col#045 v001 O0000 J/A+A/661/A5/table2*PSFCor1-2       
[00000002] col#046 v001 O0000 J/A+A/661/A5/table2*PSFCor2.3-5     
[00000002] col#047 v000 O0040 J/A+A/661/A5/table2*Nempty          
[000001ff] col#048 v001 O0003 J/A+A/661/A5/table2*FluxObsMedS     
[000001ff] col#049 v001 O0000 J/A+A/661/A5/table2*b_FluxObsS      
[000001ff] col#050 v001 O0000 J/A+A/661/A5/table2*B_FluxObsS      
[000002ff] col#051 v001 O0003 J/A+A/661/A5/table2*FluxObsMedT     
[000002ff] col#052 v001 O0000 J/A+A/661/A5/table2*b_FluxObsT      
[000002ff] col#053 v001 O0000 J/A+A/661/A5/table2*B_FluxObsT      
[000003ff] col#054 v004 OA051 J/A+A/661/A5/table2*PaperI          
[000003ff] col#055 v004 OA051 J/A+A/661/A5/table2*PaperII         
[000003ff] col#000 v000 OA002 J/A+A/661/A5/table3*recno           
[000003ff] col#001 v000 O2043 J/A+A/661/A5/table3*ID-SRC          
[000003fc] col#002 v001 O0043 J/A+A/661/A5/table3*z               
[0000037c] col#003 v001 O0000 J/A+A/661/A5/table3*lognHKL         
[0000017c] col#004 v001 O0000 J/A+A/661/A5/table3*b_lognHH        
[0000017c] col#005 v001 O0000 J/A+A/661/A5/table3*B_lognHH        
[00000024] col#006 v001 O0000 J/A+A/661/A5/table3*logkTKL         
[00000024] col#007 v001 O0000 J/A+A/661/A5/table3*b_logkTH        
[00000024] col#008 v001 O0000 J/A+A/661/A5/table3*B_logkTH        
[00000004] col#009 v001 O0000 J/A+A/661/A5/table3*logAbundKL      
[00000004] col#010 v001 O0000 J/A+A/661/A5/table3*b_logAbunH      
[00000004] col#011 v001 O0000 J/A+A/661/A5/table3*B_logAbunH      
[00000004] col#012 v001 O0000 J/A+A/661/A5/table3*logApecNormKL   
[00000004] col#013 v001 O0000 J/A+A/661/A5/table3*b_logApecNormH  
[00000004] col#014 v001 O0000 J/A+A/661/A5/table3*B_logApecNormH  
[0000037c] col#015 v001 O0000 J/A+A/661/A5/table3*lognHBF         
[00000024] col#016 v001 O0000 J/A+A/661/A5/table3*logkTBF         
[00000004] col#017 v001 O0000 J/A+A/661/A5/table3*logAbundBF      
[00000004] col#018 v001 O0000 J/A+A/661/A5/table3*logApecNBF      
[000001fc] col#019 v001 O0003 J/A+A/661/A5/table3*FluxObsBFS      
[000001ff] col#020 v001 O0003 J/A+A/661/A5/table3*FluxObsMedS     
[000001ff] col#021 v001 O0000 J/A+A/661/A5/table3*b_FluxObsS      
[000001ff] col#022 v001 O0000 J/A+A/661/A5/table3*B_FluxObsS      
[000001fc] col#023 v001 O0000 J/A+A/661/A5/table3*b2_FluxObsS     
[000001fc] col#024 v001 O0000 J/A+A/661/A5/table3*B2_FluxObsS     
[000002fc] col#025 v001 O0003 J/A+A/661/A5/table3*FluxObsBFT      
[000002ff] col#026 v001 O0003 J/A+A/661/A5/table3*FluxObsMedT     
[000002ff] col#027 v001 O0000 J/A+A/661/A5/table3*b_FluxObsT      
[000002ff] col#028 v001 O0000 J/A+A/661/A5/table3*B_FluxObsT      
[000002fc] col#029 v001 O0000 J/A+A/661/A5/table3*b2_FluxObsT     
[000002fc] col#030 v001 O0000 J/A+A/661/A5/table3*B2_FluxObsT     
[0000037c] col#031 v001 O0000 J/A+A/661/A5/table3*lognHMed        
[0000037c] col#032 v001 O0000 J/A+A/661/A5/table3*b_lognH         
[0000037c] col#033 v001 O0000 J/A+A/661/A5/table3*B_lognH         
[0000037c] col#034 v001 O0000 J/A+A/661/A5/table3*lognHMean       
[0000037c] col#035 v001 O0000 J/A+A/661/A5/table3*s_lognH         
[00000024] col#036 v001 O0000 J/A+A/661/A5/table3*logkTMed        
[00000024] col#037 v001 O0000 J/A+A/661/A5/table3*b_logkT         
[00000024] col#038 v001 O0000 J/A+A/661/A5/table3*B_logkT         
[00000024] col#039 v001 O0000 J/A+A/661/A5/table3*logkTMean       
[00000024] col#040 v001 O0000 J/A+A/661/A5/table3*s_logkT         
[00000004] col#041 v001 O0000 J/A+A/661/A5/table3*logAbundMed     
[00000004] col#042 v001 O0000 J/A+A/661/A5/table3*b_logAbund      
[00000004] col#043 v001 O0000 J/A+A/661/A5/table3*B_logAbund      
[00000004] col#044 v001 O0000 J/A+A/661/A5/table3*logAbundMean    
[00000004] col#045 v001 O0000 J/A+A/661/A5/table3*s_logAbund      
[00000004] col#046 v001 O0000 J/A+A/661/A5/table3*logApecNMed     
[00000004] col#047 v001 O0000 J/A+A/661/A5/table3*b_logApecN      
[00000004] col#048 v001 O0000 J/A+A/661/A5/table3*B_logApecN      
[00000004] col#049 v001 O0000 J/A+A/661/A5/table3*logApecNMean    
[00000004] col#050 v001 O0000 J/A+A/661/A5/table3*s_logApecN      
[000003fc] col#051 v001 O0000 J/A+A/661/A5/table3*logBkgNMed      
[000000fc] col#052 v001 O0000 J/A+A/661/A5/table3*b_logBkgN       
[000000fc] col#053 v001 O0000 J/A+A/661/A5/table3*B_logBkgN       
[000003fc] col#054 v001 O0000 J/A+A/661/A5/table3*logBkgNMean     
[000002fc] col#055 v001 O0000 J/A+A/661/A5/table3*s_logBkgN       
[0000003c] col#056 v001 O0080 J/A+A/661/A5/table3*chi25           
[0000003c] col#057 v000 O00C0 J/A+A/661/A5/table3*dof25           
[000003fc] col#058 v001 O0000 J/A+A/661/A5/table3*logZ            
[000003ff] col#059 v004 OA051 J/A+A/661/A5/table3*PaperI          
[000003ff] col#060 v004 OA051 J/A+A/661/A5/table3*PaperII         
[000003ff] col#000 v000 OA002 J/A+A/661/A5/table4*recno           
[000003ff] col#001 v000 O2043 J/A+A/661/A5/table4*ID-SRC          
[000003fc] col#002 v001 O0003 J/A+A/661/A5/table4*z               
[00000338] col#003 v001 O0000 J/A+A/661/A5/table4*GammaKL         
[00000138] col#004 v001 O0000 J/A+A/661/A5/table4*b_GammaH        
[00000138] col#005 v001 O0000 J/A+A/661/A5/table4*B_GammaH        
[0000037c] col#006 v001 O0000 J/A+A/661/A5/table4*lognHKL         
[0000017c] col#007 v001 O0000 J/A+A/661/A5/table4*b_lognHH        
[0000017c] col#008 v001 O0000 J/A+A/661/A5/table4*B_lognHH        
[000003f8] col#009 v001 O0000 J/A+A/661/A5/table4*logPowNKL       
[00000008] col#010 v001 O0000 J/A+A/661/A5/table4*b_logPowNH      
[00000008] col#011 v001 O0000 J/A+A/661/A5/table4*B_logPowNH      
[00000338] col#012 v001 O0000 J/A+A/661/A5/table4*GammaBF         
[0000037c] col#013 v001 O0000 J/A+A/661/A5/table4*lognHBF         
[00000008] col#014 v001 O0000 J/A+A/661/A5/table4*logPowNBF       
[000001fc] col#015 v001 O0003 J/A+A/661/A5/table4*FluxObsBFS      
[000001ff] col#016 v001 O0003 J/A+A/661/A5/table4*FluxObsMedS     
[000001ff] col#017 v001 O0000 J/A+A/661/A5/table4*b_FluxObsS      
[000001ff] col#018 v001 O0000 J/A+A/661/A5/table4*B_FluxObsS      
[000001fc] col#019 v001 O0000 J/A+A/661/A5/table4*b2_FluxObsS     
[000001fc] col#020 v001 O0000 J/A+A/661/A5/table4*B2_FluxObsS     
[000002fc] col#021 v001 O0003 J/A+A/661/A5/table4*FluxObsBFT      
[000002ff] col#022 v001 O0003 J/A+A/661/A5/table4*FluxObsMedT     
[000002ff] col#023 v001 O0000 J/A+A/661/A5/table4*b_FluxObsT      
[000002ff] col#024 v001 O0000 J/A+A/661/A5/table4*B_FluxObsT      
[000002fc] col#025 v001 O0000 J/A+A/661/A5/table4*b2_FluxObsT     
[000002fc] col#026 v001 O0000 J/A+A/661/A5/table4*B2_FluxObsT     
[00000008] col#027 v001 O0003 J/A+A/661/A5/table4*FluxcBFS        
[00000009] col#028 v001 O0003 J/A+A/661/A5/table4*FluxcMedS       
[00000009] col#029 v001 O0000 J/A+A/661/A5/table4*b_FluxcS        
[00000009] col#030 v001 O0000 J/A+A/661/A5/table4*B_FluxcS        
[00000008] col#031 v001 O0000 J/A+A/661/A5/table4*b2_FluxcS       
[00000008] col#032 v001 O0000 J/A+A/661/A5/table4*B2_FluxcS       
[00000008] col#033 v001 O0003 J/A+A/661/A5/table4*FluxcBFT        
[00000009] col#034 v001 O0003 J/A+A/661/A5/table4*FluxcMedT       
[00000009] col#035 v001 O0000 J/A+A/661/A5/table4*b_FluxcT        
[00000009] col#036 v001 O0000 J/A+A/661/A5/table4*B_FluxcT        
[00000008] col#037 v001 O0000 J/A+A/661/A5/table4*b2_FluxcT       
[00000008] col#038 v001 O0000 J/A+A/661/A5/table4*B2_FluxcT       
[000000f8] col#039 v001 O0003 J/A+A/661/A5/table4*FluxIBFS        
[000000f9] col#040 v001 O0003 J/A+A/661/A5/table4*FluxIMedS       
[000000f9] col#041 v001 O0000 J/A+A/661/A5/table4*b_FluxIS        
[000000f9] col#042 v001 O0000 J/A+A/661/A5/table4*B_FluxIS        
[000000f8] col#043 v001 O0000 J/A+A/661/A5/table4*b2_FluxIS       
[000000f8] col#044 v001 O0000 J/A+A/661/A5/table4*B2_FluxIS       
[000000f8] col#045 v001 O0003 J/A+A/661/A5/table4*FluxIBF2keV     
[000000f9] col#046 v001 O0003 J/A+A/661/A5/table4*FluxIMed2keV    
[000000f9] col#047 v001 O0000 J/A+A/661/A5/table4*b_FluxI2keV     
[000000f9] col#048 v001 O0000 J/A+A/661/A5/table4*B_FluxI2keV     
[000000f8] col#049 v001 O0000 J/A+A/661/A5/table4*b2_FluxI2keV    
[000000f8] col#050 v001 O0000 J/A+A/661/A5/table4*B2_FluxI2keV    
[000000f8] col#051 v001 O0083 J/A+A/661/A5/table4*LumIBFS         
[000000f9] col#052 v001 O0083 J/A+A/661/A5/table4*LumIMedS        
[000000f9] col#053 v001 O0080 J/A+A/661/A5/table4*b_LumIS         
[000000f9] col#054 v001 O0080 J/A+A/661/A5/table4*B_LumIS         
[00000078] col#055 v001 O0080 J/A+A/661/A5/table4*b2_LumIS        
[000000f8] col#056 v001 O0080 J/A+A/661/A5/table4*B2_LumIS        
[000000f8] col#057 v001 O0083 J/A+A/661/A5/table4*LumIBF2keV      
[000000f9] col#058 v001 O0083 J/A+A/661/A5/table4*LumIMed2keV     
[000000f9] col#059 v001 O0080 J/A+A/661/A5/table4*b_LumI2keV      
[000000f9] col#060 v001 O0080 J/A+A/661/A5/table4*B_LumI2keV      
[000000f8] col#061 v001 O0080 J/A+A/661/A5/table4*b2_LumI2keV     
[000000f8] col#062 v001 O0080 J/A+A/661/A5/table4*B2_LumI2keV     
[00000338] col#063 v001 O0000 J/A+A/661/A5/table4*GammaMed        
[00000138] col#064 v001 O0000 J/A+A/661/A5/table4*b_Gamma         
[00000138] col#065 v001 O0000 J/A+A/661/A5/table4*B_Gamma         
[00000338] col#066 v001 O0000 J/A+A/661/A5/table4*GammaMean       
[00000338] col#067 v001 O0000 J/A+A/661/A5/table4*s_Gamma         
[0000037c] col#068 v001 O0000 J/A+A/661/A5/table4*lognHMed        
[0000037c] col#069 v001 O0000 J/A+A/661/A5/table4*b_lognH         
[0000037c] col#070 v001 O0000 J/A+A/661/A5/table4*B_lognH         
[0000037c] col#071 v001 O0000 J/A+A/661/A5/table4*lognHMean       
[0000037c] col#072 v001 O0000 J/A+A/661/A5/table4*s_lognH         
[00000008] col#073 v001 O0000 J/A+A/661/A5/table4*logPowNMed      
[00000008] col#074 v001 O0000 J/A+A/661/A5/table4*b_logPowN       
[00000008] col#075 v001 O0000 J/A+A/661/A5/table4*B_logPowN       
[00000008] col#076 v001 O0000 J/A+A/661/A5/table4*logPowNMean     
[00000008] col#077 v001 O0000 J/A+A/661/A5/table4*s_logPowN       
[000003fc] col#078 v001 O0000 J/A+A/661/A5/table4*logBkgNMed      
[000000fc] col#079 v001 O0000 J/A+A/661/A5/table4*b_logBkgN       
[000000fc] col#080 v001 O0000 J/A+A/661/A5/table4*B_logBkgN       
[000003fc] col#081 v001 O0000 J/A+A/661/A5/table4*logBkgNMean     
[000002fc] col#082 v001 O0000 J/A+A/661/A5/table4*s_logBkgN       
[0000003c] col#083 v001 O0080 J/A+A/661/A5/table4*chi25           
[0000003c] col#084 v000 O00C0 J/A+A/661/A5/table4*dof25           
[000003fc] col#085 v001 O0000 J/A+A/661/A5/table4*logZ            
[00000009] col#086 v000 O0040 J/A+A/661/A5/table4*NHclass         
[000003ff] col#087 v004 OA051 J/A+A/661/A5/table4*PaperI          
[000003ff] col#088 v004 OA051 J/A+A/661/A5/table4*PaperII         
[000003ff] col#000 v000 OA002 J/A+A/661/A5/table5*recno           
[000003ff] col#001 v000 O2043 J/A+A/661/A5/table5*ID-SRC          
[000003fc] col#002 v001 O0003 J/A+A/661/A5/table5*z               
[00000010] col#003 v001 O0000 J/A+A/661/A5/table5*dGmKL           
[00000010] col#004 v001 O0000 J/A+A/661/A5/table5*b_dGmH          
[00000010] col#005 v001 O0000 J/A+A/661/A5/table5*B_dGmH          
[00000338] col#006 v001 O0080 J/A+A/661/A5/table5*GammaKL         
[00000138] col#007 v001 O0000 J/A+A/661/A5/table5*b_GammaH        
[00000138] col#008 v001 O0000 J/A+A/661/A5/table5*B_GammaH        
[0000037c] col#009 v001 O0000 J/A+A/661/A5/table5*lognHKL         
[0000017c] col#010 v001 O0000 J/A+A/661/A5/table5*b_lognHH        
[0000017c] col#011 v001 O0000 J/A+A/661/A5/table5*B_lognHH        
[000003f8] col#012 v001 O0000 J/A+A/661/A5/table5*logPowNKL       
[000001f0] col#013 v001 O0000 J/A+A/661/A5/table5*b_logPowNH      
[000001f0] col#014 v001 O0000 J/A+A/661/A5/table5*B_logPowNH      
[00000010] col#015 v001 O0080 J/A+A/661/A5/table5*logFracKL       
[00000010] col#016 v001 O0000 J/A+A/661/A5/table5*b_logFracH      
[00000010] col#017 v001 O0000 J/A+A/661/A5/table5*B_logFracH      
[00000010] col#018 v001 O0000 J/A+A/661/A5/table5*dGmBF           
[00000338] col#019 v001 O0000 J/A+A/661/A5/table5*GammaBF         
[0000037c] col#020 v001 O0000 J/A+A/661/A5/table5*lognHBF         
[000003f0] col#021 v001 O0000 J/A+A/661/A5/table5*logPowNBF       
[00000010] col#022 v001 O0000 J/A+A/661/A5/table5*logFracBF       
[000001fc] col#023 v001 O0003 J/A+A/661/A5/table5*FluxObsBFS      
[000001ff] col#024 v001 O0003 J/A+A/661/A5/table5*FluxObsMedS     
[000001ff] col#025 v001 O0000 J/A+A/661/A5/table5*b_FluxObsS      
[000001ff] col#026 v001 O0000 J/A+A/661/A5/table5*B_FluxObsS      
[000001fc] col#027 v001 O0000 J/A+A/661/A5/table5*b2_FluxObsS     
[000001fc] col#028 v001 O0000 J/A+A/661/A5/table5*B2_FluxObsS     
[000002fc] col#029 v001 O0003 J/A+A/661/A5/table5*FluxObsBFT      
[000002ff] col#030 v001 O0003 J/A+A/661/A5/table5*FluxObsMedT     
[000002ff] col#031 v001 O0000 J/A+A/661/A5/table5*b_FluxObsT      
[000002ff] col#032 v001 O0000 J/A+A/661/A5/table5*B_FluxObsT      
[000002fc] col#033 v001 O0000 J/A+A/661/A5/table5*b2_FluxObsT     
[000002fc] col#034 v001 O0000 J/A+A/661/A5/table5*B2_FluxObsT     
[000000f0] col#035 v001 O0003 J/A+A/661/A5/table5*FluxCBFS        
[000000f0] col#036 v001 O0003 J/A+A/661/A5/table5*FluxCMedS       
[000000f0] col#037 v001 O0000 J/A+A/661/A5/table5*b_FluxCS        
[000000f0] col#038 v001 O0000 J/A+A/661/A5/table5*B_FluxCS        
[000000f0] col#039 v001 O0000 J/A+A/661/A5/table5*b2_FluxCS       
[000000f0] col#040 v001 O0000 J/A+A/661/A5/table5*B2_FluxCS       
[000002f0] col#041 v001 O0003 J/A+A/661/A5/table5*FluxCBFT        
[000002f0] col#042 v001 O0003 J/A+A/661/A5/table5*FluxCMedT       
[000000f0] col#043 v001 O0000 J/A+A/661/A5/table5*b_FluxCT        
[000000f0] col#044 v001 O0000 J/A+A/661/A5/table5*B_FluxCT        
[000000f0] col#045 v001 O0000 J/A+A/661/A5/table5*b2_FluxCT       
[000000f0] col#046 v001 O0000 J/A+A/661/A5/table5*B2_FluxCT       
[000000f8] col#047 v001 O0003 J/A+A/661/A5/table5*FluxIBFS        
[000000f9] col#048 v001 O0003 J/A+A/661/A5/table5*FluxIMedS       
[000000f9] col#049 v001 O0000 J/A+A/661/A5/table5*b_FluxIS        
[000000f9] col#050 v001 O0000 J/A+A/661/A5/table5*B_FluxIS        
[000000f8] col#051 v001 O0000 J/A+A/661/A5/table5*b2_FluxIS       
[000000f8] col#052 v001 O0000 J/A+A/661/A5/table5*B2_FluxIS       
[000000f8] col#053 v001 O0003 J/A+A/661/A5/table5*FluxIBF2keV     
[000000f9] col#054 v001 O0003 J/A+A/661/A5/table5*FluxIMed2keV    
[000000f9] col#055 v001 O0000 J/A+A/661/A5/table5*b_FluxI2keV     
[000000f9] col#056 v001 O0000 J/A+A/661/A5/table5*B_FluxI2keV     
[000000f8] col#057 v001 O0000 J/A+A/661/A5/table5*b2_FluxI2keV    
[000000f8] col#058 v001 O0000 J/A+A/661/A5/table5*B2_FluxI2keV    
[000000f8] col#059 v001 O0083 J/A+A/661/A5/table5*LumIBFS         
[000000f9] col#060 v001 O0083 J/A+A/661/A5/table5*LumIMedS        
[000000f9] col#061 v001 O0080 J/A+A/661/A5/table5*b_LumIS         
[000000f9] col#062 v001 O0080 J/A+A/661/A5/table5*B_LumIS         
[00000078] col#063 v001 O0080 J/A+A/661/A5/table5*b2_LumIS        
[000000f8] col#064 v001 O0080 J/A+A/661/A5/table5*B2_LumIS        
[000000f8] col#065 v001 O0083 J/A+A/661/A5/table5*LumIBF2keV      
[000000f9] col#066 v001 O0083 J/A+A/661/A5/table5*LumIMed2keV     
[000000f9] col#067 v001 O0080 J/A+A/661/A5/table5*b_LumI2keV      
[000000f9] col#068 v001 O0080 J/A+A/661/A5/table5*B_LumI2keV      
[000000f8] col#069 v001 O0080 J/A+A/661/A5/table5*b2_LumI2keV     
[000000f8] col#070 v001 O0080 J/A+A/661/A5/table5*B2_LumI2keV     
[00000010] col#071 v001 O0000 J/A+A/661/A5/table5*dGmMed          
[00000010] col#072 v001 O0000 J/A+A/661/A5/table5*b_dGm           
[00000010] col#073 v001 O0000 J/A+A/661/A5/table5*B_dGm           
[00000010] col#074 v001 O0000 J/A+A/661/A5/table5*dGmMean         
[00000010] col#075 v001 O0000 J/A+A/661/A5/table5*s_dGm           
[00000338] col#076 v001 O0000 J/A+A/661/A5/table5*GammaMed        
[00000138] col#077 v001 O0000 J/A+A/661/A5/table5*b_Gamma         
[00000138] col#078 v001 O0000 J/A+A/661/A5/table5*B_Gamma         
[00000338] col#079 v001 O0000 J/A+A/661/A5/table5*GammaMean       
[00000338] col#080 v001 O0000 J/A+A/661/A5/table5*s_Gamma         
[0000037c] col#081 v001 O0000 J/A+A/661/A5/table5*lognHMed        
[0000037c] col#082 v001 O0000 J/A+A/661/A5/table5*b_lognH         
[0000037c] col#083 v001 O0000 J/A+A/661/A5/table5*B_lognH         
[0000037c] col#084 v001 O0000 J/A+A/661/A5/table5*lognHMean       
[0000037c] col#085 v001 O0000 J/A+A/661/A5/table5*s_lognH         
[000003f0] col#086 v001 O0000 J/A+A/661/A5/table5*logPowNMed      
[000003f0] col#087 v001 O0000 J/A+A/661/A5/table5*b_logPowN       
[000003f0] col#088 v001 O0000 J/A+A/661/A5/table5*B_logPowN       
[000003f0] col#089 v001 O0000 J/A+A/661/A5/table5*logPowNMean     
[000003f0] col#090 v001 O0000 J/A+A/661/A5/table5*s_logPowN       
[00000010] col#091 v001 O0000 J/A+A/661/A5/table5*logFracMed      
[00000010] col#092 v001 O0000 J/A+A/661/A5/table5*b_logFrac       
[00000010] col#093 v001 O0000 J/A+A/661/A5/table5*B_logFrac       
[00000010] col#094 v001 O0000 J/A+A/661/A5/table5*logFracMean     
[00000010] col#095 v001 O0000 J/A+A/661/A5/table5*s_logFrac       
[000003fc] col#096 v001 O0000 J/A+A/661/A5/table5*logBkgNMed      
[000000fc] col#097 v001 O0000 J/A+A/661/A5/table5*b_logBkgN       
[000000fc] col#098 v001 O0000 J/A+A/661/A5/table5*B_logBkgN       
[000003fc] col#099 v001 O0000 J/A+A/661/A5/table5*logBkgNMean     
[000002fc] col#100 v001 O0000 J/A+A/661/A5/table5*s_logBkgN       
[0000003c] col#101 v001 O0080 J/A+A/661/A5/table5*chi25           
[0000003c] col#102 v000 O00C0 J/A+A/661/A5/table5*dof25           
[000003fc] col#103 v001 O0000 J/A+A/661/A5/table5*logZ            
[000003ff] col#104 v004 OA051 J/A+A/661/A5/table5*PaperI          
[000003ff] col#105 v004 OA051 J/A+A/661/A5/table5*PaperII         
[000003ff] col#000 v000 OA002 J/A+A/661/A5/table6*recno           
[000003ff] col#001 v000 O2043 J/A+A/661/A5/table6*ID-SRC          
[000003fc] col#002 v001 O0003 J/A+A/661/A5/table6*z               
[00000338] col#003 v001 O0000 J/A+A/661/A5/table6*GammaKL         
[00000138] col#004 v001 O0000 J/A+A/661/A5/table6*b_GammaH        
[00000138] col#005 v001 O0000 J/A+A/661/A5/table6*B_GammaH        
[0000037c] col#006 v001 O0000 J/A+A/661/A5/table6*lognHKL         
[0000017c] col#007 v001 O0000 J/A+A/661/A5/table6*b_lognHH        
[0000017c] col#008 v001 O0000 J/A+A/661/A5/table6*B_lognHH        
[000003f8] col#009 v001 O0000 J/A+A/661/A5/table6*logPowNKL       
[000001f0] col#010 v001 O0000 J/A+A/661/A5/table6*b_logPowNH      
[000001f0] col#011 v001 O0000 J/A+A/661/A5/table6*B_logPowNH      
[00000024] col#012 v001 O0000 J/A+A/661/A5/table6*logkTKL         
[00000024] col#013 v001 O0000 J/A+A/661/A5/table6*b_logkTH        
[00000024] col#014 v001 O0000 J/A+A/661/A5/table6*B_logkTH        
[00000020] col#015 v001 O0000 J/A+A/661/A5/table6*logBBNKL        
[00000020] col#016 v001 O0000 J/A+A/661/A5/table6*b_logBBNH       
[00000020] col#017 v001 O0000 J/A+A/661/A5/table6*B_logBBNH       
[00000338] col#018 v001 O0000 J/A+A/661/A5/table6*GammaBF         
[0000037c] col#019 v001 O0000 J/A+A/661/A5/table6*lognHBF         
[000003f0] col#020 v001 O0000 J/A+A/661/A5/table6*logPowNBF       
[00000024] col#021 v001 O0000 J/A+A/661/A5/table6*logkTBF         
[00000020] col#022 v001 O0000 J/A+A/661/A5/table6*logBBNBF        
[000001fc] col#023 v001 O0003 J/A+A/661/A5/table6*FluxObsBFS      
[000001ff] col#024 v001 O0003 J/A+A/661/A5/table6*FluxObsMedS     
[000001ff] col#025 v001 O0000 J/A+A/661/A5/table6*b_FluxObsS      
[000001ff] col#026 v001 O0000 J/A+A/661/A5/table6*B_FluxObsS      
[000001fc] col#027 v001 O0000 J/A+A/661/A5/table6*b2_FluxObsS     
[000001fc] col#028 v001 O0000 J/A+A/661/A5/table6*B2_FluxObsS     
[000002fc] col#029 v001 O0003 J/A+A/661/A5/table6*FluxObsBFT      
[000002ff] col#030 v001 O0003 J/A+A/661/A5/table6*FluxObsMedT     
[000002ff] col#031 v001 O0000 J/A+A/661/A5/table6*b_FluxObsT      
[000002ff] col#032 v001 O0000 J/A+A/661/A5/table6*B_FluxObsT      
[000002fc] col#033 v001 O0000 J/A+A/661/A5/table6*b2_FluxObsT     
[000002fc] col#034 v001 O0000 J/A+A/661/A5/table6*B2_FluxObsT     
[000000f0] col#035 v001 O0003 J/A+A/661/A5/table6*FluxCBFS        
[000000f0] col#036 v001 O0003 J/A+A/661/A5/table6*FluxCMedS       
[000000f0] col#037 v001 O0000 J/A+A/661/A5/table6*b_FluxCS        
[000000f0] col#038 v001 O0000 J/A+A/661/A5/table6*B_FluxCS        
[000000f0] col#039 v001 O0000 J/A+A/661/A5/table6*b2_FluxCS       
[000000f0] col#040 v001 O0000 J/A+A/661/A5/table6*B2_FluxCS       
[000002f0] col#041 v001 O0003 J/A+A/661/A5/table6*FluxCBFT        
[000002f0] col#042 v001 O0003 J/A+A/661/A5/table6*FluxCMedT       
[000000f0] col#043 v001 O0000 J/A+A/661/A5/table6*b_FluxCT        
[000000f0] col#044 v001 O0000 J/A+A/661/A5/table6*B_FluxCT        
[000000f0] col#045 v001 O0000 J/A+A/661/A5/table6*b2_FluxCT       
[000000f0] col#046 v001 O0000 J/A+A/661/A5/table6*B2_FluxCT       
[000000f8] col#047 v001 O0003 J/A+A/661/A5/table6*FluxIBFS        
[000000f9] col#048 v001 O0003 J/A+A/661/A5/table6*FluxIMedS       
[000000f9] col#049 v001 O0000 J/A+A/661/A5/table6*b_FluxIS        
[000000f9] col#050 v001 O0000 J/A+A/661/A5/table6*B_FluxIS        
[000000f8] col#051 v001 O0000 J/A+A/661/A5/table6*b2_FluxIS       
[000000f8] col#052 v001 O0000 J/A+A/661/A5/table6*B2_FluxIS       
[000000f8] col#053 v001 O0003 J/A+A/661/A5/table6*FluxIBF2keV     
[000000f9] col#054 v001 O0003 J/A+A/661/A5/table6*FluxIMed2keV    
[000000f9] col#055 v001 O0000 J/A+A/661/A5/table6*b_FluxI2keV     
[000000f9] col#056 v001 O0000 J/A+A/661/A5/table6*B_FluxI2keV     
[000000f8] col#057 v001 O0000 J/A+A/661/A5/table6*b2_FluxI2keV    
[000000f8] col#058 v001 O0000 J/A+A/661/A5/table6*B2_FluxI2keV    
[000000f8] col#059 v001 O0083 J/A+A/661/A5/table6*LumIBFS         
[000000f9] col#060 v001 O0083 J/A+A/661/A5/table6*LumIMedS        
[000000f9] col#061 v001 O0080 J/A+A/661/A5/table6*b_LumIS         
[000000f9] col#062 v001 O0080 J/A+A/661/A5/table6*B_LumIS         
[00000078] col#063 v001 O0080 J/A+A/661/A5/table6*b2_LumIS        
[000000f8] col#064 v001 O0080 J/A+A/661/A5/table6*B2_LumIS        
[000000f8] col#065 v001 O0083 J/A+A/661/A5/table6*LumIBF2keV      
[000000f9] col#066 v001 O0083 J/A+A/661/A5/table6*LumIMed2keV     
[000000f9] col#067 v001 O0080 J/A+A/661/A5/table6*b_LumI2keV      
[000000f9] col#068 v001 O0080 J/A+A/661/A5/table6*B_LumI2keV      
[000000f8] col#069 v001 O0080 J/A+A/661/A5/table6*b2_LumI2keV     
[000000f8] col#070 v001 O0080 J/A+A/661/A5/table6*B2_LumI2keV     
[00000338] col#071 v001 O0000 J/A+A/661/A5/table6*GammaMed        
[00000138] col#072 v001 O0000 J/A+A/661/A5/table6*b_Gamma         
[00000138] col#073 v001 O0000 J/A+A/661/A5/table6*B_Gamma         
[00000338] col#074 v001 O0000 J/A+A/661/A5/table6*GammaMean       
[00000338] col#075 v001 O0000 J/A+A/661/A5/table6*s_Gamma         
[0000037c] col#076 v001 O0000 J/A+A/661/A5/table6*lognHMed        
[0000037c] col#077 v001 O0000 J/A+A/661/A5/table6*b_lognH         
[0000037c] col#078 v001 O0000 J/A+A/661/A5/table6*B_lognH         
[0000037c] col#079 v001 O0000 J/A+A/661/A5/table6*lognHMean       
[0000037c] col#080 v001 O0000 J/A+A/661/A5/table6*s_lognH         
[000003f0] col#081 v001 O0000 J/A+A/661/A5/table6*logPowNMed      
[000003f0] col#082 v001 O0000 J/A+A/661/A5/table6*b_logPowN       
[000003f0] col#083 v001 O0000 J/A+A/661/A5/table6*B_logPowN       
[000003f0] col#084 v001 O0000 J/A+A/661/A5/table6*logPowNMean     
[000003f0] col#085 v001 O0000 J/A+A/661/A5/table6*s_logPowN       
[00000024] col#086 v001 O0000 J/A+A/661/A5/table6*logkTMed        
[00000024] col#087 v001 O0000 J/A+A/661/A5/table6*b_logkT         
[00000024] col#088 v001 O0000 J/A+A/661/A5/table6*B_logkT         
[00000024] col#089 v001 O0000 J/A+A/661/A5/table6*logkTMean       
[00000024] col#090 v001 O0000 J/A+A/661/A5/table6*s_logkT         
[00000020] col#091 v001 O0000 J/A+A/661/A5/table6*logBBNMed       
[00000020] col#092 v001 O0000 J/A+A/661/A5/table6*b_logBBN        
[00000020] col#093 v001 O0000 J/A+A/661/A5/table6*B_logBBN        
[00000020] col#094 v001 O0000 J/A+A/661/A5/table6*logBBNMean      
[00000020] col#095 v001 O0000 J/A+A/661/A5/table6*s_logBBN        
[000003fc] col#096 v001 O0000 J/A+A/661/A5/table6*logBkgNMed      
[000000fc] col#097 v001 O0000 J/A+A/661/A5/table6*b_logBkgN       
[000000fc] col#098 v001 O0000 J/A+A/661/A5/table6*B_logBkgN       
[000003fc] col#099 v001 O0000 J/A+A/661/A5/table6*logBkgNMean     
[000002fc] col#100 v001 O0000 J/A+A/661/A5/table6*s_logBkgN       
[0000003c] col#101 v001 O0080 J/A+A/661/A5/table6*chi25           
[0000003c] col#102 v000 O00C0 J/A+A/661/A5/table6*dof25           
[000003fc] col#103 v001 O0000 J/A+A/661/A5/table6*logZ            
[00000020] col#104 v001 O0000 J/A+A/661/A5/table6*logRbb          
[000003ff] col#105 v004 OA051 J/A+A/661/A5/table6*PaperI          
[000003ff] col#106 v004 OA051 J/A+A/661/A5/table6*PaperII         
[000003ff] col#000 v000 OA002 J/A+A/661/A5/table7*recno           
[000003ff] col#001 v000 O2043 J/A+A/661/A5/table7*ID-SRC          
[000003fc] col#002 v001 O0003 J/A+A/661/A5/table7*z               
[0000037c] col#003 v001 O0000 J/A+A/661/A5/table7*lognHKL         
[0000017c] col#004 v001 O0000 J/A+A/661/A5/table7*b_lognHH        
[0000017c] col#005 v001 O0000 J/A+A/661/A5/table7*B_lognHH        
[000003f8] col#006 v001 O0000 J/A+A/661/A5/table7*logPowNKL       
[000001f0] col#007 v001 O0000 J/A+A/661/A5/table7*b_logPowNH      
[000001f0] col#008 v001 O0000 J/A+A/661/A5/table7*B_logPowNH      
[0000037c] col#009 v001 O0000 J/A+A/661/A5/table7*lognHBF         
[000003f0] col#010 v001 O0000 J/A+A/661/A5/table7*logPowNBF       
[000001fc] col#011 v001 O0003 J/A+A/661/A5/table7*FluxObsBFS      
[000001ff] col#012 v001 O0003 J/A+A/661/A5/table7*FluxObsMedS     
[000001ff] col#013 v001 O0000 J/A+A/661/A5/table7*b_FluxObsS      
[000001ff] col#014 v001 O0000 J/A+A/661/A5/table7*B_FluxObsS      
[000001fc] col#015 v001 O0000 J/A+A/661/A5/table7*b2_FluxObsS     
[000001fc] col#016 v001 O0000 J/A+A/661/A5/table7*B2_FluxObsS     
[000002fc] col#017 v001 O0003 J/A+A/661/A5/table7*FluxObsBFT      
[000002ff] col#018 v001 O0003 J/A+A/661/A5/table7*FluxObsMedT     
[000002ff] col#019 v001 O0000 J/A+A/661/A5/table7*b_FluxObsT      
[000002ff] col#020 v001 O0000 J/A+A/661/A5/table7*B_FluxObsT      
[000002fc] col#021 v001 O0000 J/A+A/661/A5/table7*b2_FluxObsT     
[000002fc] col#022 v001 O0000 J/A+A/661/A5/table7*B2_FluxObsT     
[000000f0] col#023 v001 O0003 J/A+A/661/A5/table7*FluxCBFS        
[000000f0] col#024 v001 O0003 J/A+A/661/A5/table7*FluxCMedS       
[000000f0] col#025 v001 O0000 J/A+A/661/A5/table7*b_FluxCS        
[000000f0] col#026 v001 O0000 J/A+A/661/A5/table7*B_FluxCS        
[000000f0] col#027 v001 O0000 J/A+A/661/A5/table7*b2_FluxCS       
[000000f0] col#028 v001 O0000 J/A+A/661/A5/table7*B2_FluxCS       
[000002f0] col#029 v001 O0003 J/A+A/661/A5/table7*FluxCBFT        
[000002f0] col#030 v001 O0003 J/A+A/661/A5/table7*FluxCMedT       
[000000f0] col#031 v001 O0000 J/A+A/661/A5/table7*b_FluxCT        
[000000f0] col#032 v001 O0000 J/A+A/661/A5/table7*B_FluxCT        
[000000f0] col#033 v001 O0000 J/A+A/661/A5/table7*b2_FluxCT       
[000000f0] col#034 v001 O0000 J/A+A/661/A5/table7*B2_FluxCT       
[000000f8] col#035 v001 O0003 J/A+A/661/A5/table7*FluxIBFS        
[000000f9] col#036 v001 O0003 J/A+A/661/A5/table7*FluxIMedS       
[000000f9] col#037 v001 O0000 J/A+A/661/A5/table7*b_FluxIS        
[000000f9] col#038 v001 O0000 J/A+A/661/A5/table7*B_FluxIS        
[000000f8] col#039 v001 O0000 J/A+A/661/A5/table7*b2_FluxIS       
[000000f8] col#040 v001 O0000 J/A+A/661/A5/table7*B2_FluxIS       
[000000f8] col#041 v001 O0003 J/A+A/661/A5/table7*FluxIBF2keV     
[000000f9] col#042 v001 O0003 J/A+A/661/A5/table7*FluxIMed2keV    
[000000f9] col#043 v001 O0000 J/A+A/661/A5/table7*b_FluxI2keV     
[000000f9] col#044 v001 O0000 J/A+A/661/A5/table7*B_FluxI2keV     
[000000f8] col#045 v001 O0000 J/A+A/661/A5/table7*b2_FluxI2keV    
[000000f8] col#046 v001 O0000 J/A+A/661/A5/table7*B2_FluxI2keV    
[000000f8] col#047 v001 O0083 J/A+A/661/A5/table7*LumIBFS         
[000000f9] col#048 v001 O0083 J/A+A/661/A5/table7*LumIMedS        
[000000f9] col#049 v001 O0080 J/A+A/661/A5/table7*b_LumIS         
[000000f9] col#050 v001 O0080 J/A+A/661/A5/table7*B_LumIS         
[00000078] col#051 v001 O0080 J/A+A/661/A5/table7*b2_LumIS        
[000000f8] col#052 v001 O0080 J/A+A/661/A5/table7*B2_LumIS        
[000000f8] col#053 v001 O0083 J/A+A/661/A5/table7*LumIBF2keV      
[000000f9] col#054 v001 O0083 J/A+A/661/A5/table7*LumIMed2keV     
[000000f9] col#055 v001 O0080 J/A+A/661/A5/table7*b_LumI2keV      
[000000f9] col#056 v001 O0080 J/A+A/661/A5/table7*B_LumI2keV      
[000000f8] col#057 v001 O0080 J/A+A/661/A5/table7*b2_LumI2keV     
[000000f8] col#058 v001 O0080 J/A+A/661/A5/table7*B2_LumI2keV     
[0000037c] col#059 v001 O0000 J/A+A/661/A5/table7*lognHMed        
[0000037c] col#060 v001 O0000 J/A+A/661/A5/table7*b_lognH         
[0000037c] col#061 v001 O0000 J/A+A/661/A5/table7*B_lognH         
[0000037c] col#062 v001 O0000 J/A+A/661/A5/table7*lognHMean       
[0000037c] col#063 v001 O0000 J/A+A/661/A5/table7*s_lognH         
[000003f0] col#064 v001 O0000 J/A+A/661/A5/table7*logPowNMed      
[000003f0] col#065 v001 O0000 J/A+A/661/A5/table7*b_logPowN       
[000003f0] col#066 v001 O0000 J/A+A/661/A5/table7*B_logPowN       
[000003f0] col#067 v001 O0000 J/A+A/661/A5/table7*logPowNMean     
[000003f0] col#068 v001 O0000 J/A+A/661/A5/table7*s_logPowN       
[000003fc] col#069 v001 O0000 J/A+A/661/A5/table7*logBkgNMed      
[000000fc] col#070 v001 O0000 J/A+A/661/A5/table7*b_logBkgN       
[000000fc] col#071 v001 O0000 J/A+A/661/A5/table7*B_logBkgN       
[000003fc] col#072 v001 O0000 J/A+A/661/A5/table7*logBkgNMean     
[000002fc] col#073 v001 O0000 J/A+A/661/A5/table7*s_logBkgN       
[000003fc] col#074 v001 O0000 J/A+A/661/A5/table7*logZ            
[000003ff] col#075 v004 OA051 J/A+A/661/A5/table7*PaperI          
[000003ff] col#076 v004 OA051 J/A+A/661/A5/table7*PaperII         
[000003ff] col#000 v000 OA002 J/A+A/661/A5/table8*recno           
[000003ff] col#001 v000 O2043 J/A+A/661/A5/table8*ID-SRC          
[000003fc] col#002 v001 O0003 J/A+A/661/A5/table8*z               
[000003f8] col#003 v001 O0000 J/A+A/661/A5/table8*logPowNKL       
[000001f0] col#004 v001 O0000 J/A+A/661/A5/table8*b_logPowNH      
[000001f0] col#005 v001 O0000 J/A+A/661/A5/table8*B_logPowNH      
[000003f0] col#006 v001 O0000 J/A+A/661/A5/table8*logPowNBF       
[000001fc] col#007 v001 O0003 J/A+A/661/A5/table8*FluxObsBFS      
[000001ff] col#008 v001 O0003 J/A+A/661/A5/table8*FluxObsMedS     
[000001ff] col#009 v001 O0000 J/A+A/661/A5/table8*b_FluxObsS      
[000001ff] col#010 v001 O0000 J/A+A/661/A5/table8*B_FluxObsS      
[000001fc] col#011 v001 O0000 J/A+A/661/A5/table8*b2_FluxObsS     
[000001fc] col#012 v001 O0000 J/A+A/661/A5/table8*B2_FluxObsS     
[000002fc] col#013 v001 O0003 J/A+A/661/A5/table8*FluxObsBFT      
[000002ff] col#014 v001 O0003 J/A+A/661/A5/table8*FluxObsMedT     
[000002ff] col#015 v001 O0000 J/A+A/661/A5/table8*b_FluxObsT      
[000002ff] col#016 v001 O0000 J/A+A/661/A5/table8*B_FluxObsT      
[000002fc] col#017 v001 O0000 J/A+A/661/A5/table8*b2_FluxObsT     
[000002fc] col#018 v001 O0000 J/A+A/661/A5/table8*B2_FluxObsT     
[000000f0] col#019 v001 O0003 J/A+A/661/A5/table8*FluxCBFS        
[000000f0] col#020 v001 O0003 J/A+A/661/A5/table8*FluxCMedS       
[000000f0] col#021 v001 O0000 J/A+A/661/A5/table8*b_FluxCS        
[000000f0] col#022 v001 O0000 J/A+A/661/A5/table8*B_FluxCS        
[000000f0] col#023 v001 O0000 J/A+A/661/A5/table8*b2_FluxCS       
[000000f0] col#024 v001 O0000 J/A+A/661/A5/table8*B2_FluxCS       
[000002f0] col#025 v001 O0003 J/A+A/661/A5/table8*FluxCBFT        
[000002f0] col#026 v001 O0003 J/A+A/661/A5/table8*FluxCMedT       
[000000f0] col#027 v001 O0000 J/A+A/661/A5/table8*b_FluxCT        
[000000f0] col#028 v001 O0000 J/A+A/661/A5/table8*B_FluxCT        
[000000f0] col#029 v001 O0000 J/A+A/661/A5/table8*b2_FluxCT       
[000000f0] col#030 v001 O0000 J/A+A/661/A5/table8*B2_FluxCT       
[000000f8] col#031 v001 O0003 J/A+A/661/A5/table8*FluxIBFS        
[000000f9] col#032 v001 O0003 J/A+A/661/A5/table8*FluxIMedS       
[000000f9] col#033 v001 O0000 J/A+A/661/A5/table8*b_FluxIS        
[000000f9] col#034 v001 O0000 J/A+A/661/A5/table8*B_FluxIS        
[000000f8] col#035 v001 O0000 J/A+A/661/A5/table8*b2_FluxIS       
[000000f8] col#036 v001 O0000 J/A+A/661/A5/table8*B2_FluxIS       
[000000f8] col#037 v001 O0003 J/A+A/661/A5/table8*FluxIBF2keV     
[000000f9] col#038 v001 O0003 J/A+A/661/A5/table8*FluxIMed2keV    
[000000f9] col#039 v001 O0000 J/A+A/661/A5/table8*b_FluxI2keV     
[000000f9] col#040 v001 O0000 J/A+A/661/A5/table8*B_FluxI2keV     
[000000f8] col#041 v001 O0000 J/A+A/661/A5/table8*b2_FluxI2keV    
[000000f8] col#042 v001 O0000 J/A+A/661/A5/table8*B2_FluxI2keV    
[000000f8] col#043 v001 O0083 J/A+A/661/A5/table8*LumIBFS         
[000000f9] col#044 v001 O0083 J/A+A/661/A5/table8*LumIMedS        
[000000f9] col#045 v001 O0080 J/A+A/661/A5/table8*b_LumIS         
[000000f9] col#046 v001 O0080 J/A+A/661/A5/table8*B_LumIS         
[00000080] col#047 v001 O0080 J/A+A/661/A5/table8*b2_LumI2S       
[000000f8] col#048 v001 O0080 J/A+A/661/A5/table8*B2_LumIS        
[000000f8] col#049 v001 O0083 J/A+A/661/A5/table8*LumIBF2keV      
[000000f9] col#050 v001 O0083 J/A+A/661/A5/table8*LumIMed2keV     
[000000f9] col#051 v001 O0080 J/A+A/661/A5/table8*b_LumI2keV      
[000000f9] col#052 v001 O0080 J/A+A/661/A5/table8*B_LumI2keV      
[000000f8] col#053 v001 O0080 J/A+A/661/A5/table8*b2_LumI2keV     
[000000f8] col#054 v001 O0080 J/A+A/661/A5/table8*B2_LumI2keV     
[000003f0] col#055 v001 O0000 J/A+A/661/A5/table8*logPowNMed      
[000003f0] col#056 v001 O0000 J/A+A/661/A5/table8*b_logPowN       
[000003f0] col#057 v001 O0000 J/A+A/661/A5/table8*B_logPowN       
[000003f0] col#058 v001 O0000 J/A+A/661/A5/table8*logPowNMean     
[000003f0] col#059 v001 O0000 J/A+A/661/A5/table8*s_logPowN       
[000003fc] col#060 v001 O0000 J/A+A/661/A5/table8*logBkgNMed      
[000000fc] col#061 v001 O0000 J/A+A/661/A5/table8*b_logBkgN       
[000000fc] col#062 v001 O0000 J/A+A/661/A5/table8*B_logBkgN       
[000003fc] col#063 v001 O0000 J/A+A/661/A5/table8*logBkgNMean     
[000002fc] col#064 v001 O0000 J/A+A/661/A5/table8*s_logBkgN       
[000003fc] col#065 v001 O0000 J/A+A/661/A5/table8*logZ            
[000003ff] col#066 v004 OA051 J/A+A/661/A5/table8*PaperI          
[000003ff] col#067 v004 OA051 J/A+A/661/A5/table8*PaperII         
[000003ff] col#000 v000 OA002 J/A+A/661/A5/table9*recno           
[000003ff] col#001 v000 O2043 J/A+A/661/A5/table9*ID-SRC          
[000003fc] col#002 v001 O0003 J/A+A/661/A5/table9*z               
[00000338] col#003 v001 O0000 J/A+A/661/A5/table9*GammaKL         
[00000138] col#004 v001 O0000 J/A+A/661/A5/table9*b_GammaH        
[00000138] col#005 v001 O0000 J/A+A/661/A5/table9*B_GammaH        
[0000037c] col#006 v001 O0000 J/A+A/661/A5/table9*lognHKL         
[0000017c] col#007 v001 O0000 J/A+A/661/A5/table9*b_lognHH        
[0000017c] col#008 v001 O0000 J/A+A/661/A5/table9*B_lognHH        
[000003f8] col#009 v001 O0000 J/A+A/661/A5/table9*logPowNKL       
[000001f0] col#010 v001 O0000 J/A+A/661/A5/table9*b_logPowNH      
[000001f0] col#011 v001 O0000 J/A+A/661/A5/table9*B_logPowNH      
[00000338] col#012 v001 O0000 J/A+A/661/A5/table9*GammaBF         
[0000037c] col#013 v001 O0000 J/A+A/661/A5/table9*lognHBF         
[000003f0] col#014 v001 O0000 J/A+A/661/A5/table9*logPowNBF       
[000001fc] col#015 v001 O0003 J/A+A/661/A5/table9*FluxObsBFS      
[000001ff] col#016 v001 O0003 J/A+A/661/A5/table9*FluxObsMedS     
[000001ff] col#017 v001 O0000 J/A+A/661/A5/table9*b_FluxObsS      
[000001ff] col#018 v001 O0000 J/A+A/661/A5/table9*B_FluxObsS      
[000001fc] col#019 v001 O0000 J/A+A/661/A5/table9*b2_FluxObsS     
[000001fc] col#020 v001 O0000 J/A+A/661/A5/table9*B2_FluxObsS     
[00000338] col#021 v001 O0000 J/A+A/661/A5/table9*GammaMed        
[00000138] col#022 v001 O0000 J/A+A/661/A5/table9*b_Gamma         
[00000138] col#023 v001 O0000 J/A+A/661/A5/table9*B_Gamma         
[00000338] col#024 v001 O0000 J/A+A/661/A5/table9*GammaMean       
[00000338] col#025 v001 O0000 J/A+A/661/A5/table9*s_Gamma         
[0000037c] col#026 v001 O0000 J/A+A/661/A5/table9*lognHMed        
[0000037c] col#027 v001 O0000 J/A+A/661/A5/table9*b_lognH         
[0000037c] col#028 v001 O0000 J/A+A/661/A5/table9*B_lognH         
[0000037c] col#029 v001 O0000 J/A+A/661/A5/table9*lognHMean       
[0000037c] col#030 v001 O0000 J/A+A/661/A5/table9*s_lognH         
[000003f0] col#031 v001 O0000 J/A+A/661/A5/table9*logPowNMed      
[000003f0] col#032 v001 O0000 J/A+A/661/A5/table9*b_logPowN       
[000003f0] col#033 v001 O0000 J/A+A/661/A5/table9*B_logPowN       
[000003f0] col#034 v001 O0000 J/A+A/661/A5/table9*logPowNMean     
[000003f0] col#035 v001 O0000 J/A+A/661/A5/table9*s_logPowN       
[000003fc] col#036 v001 O0000 J/A+A/661/A5/table9*logBkgNMed      
[00000100] col#037 v001 O0000 J/A+A/661/A5/table9*blogBkgN        
[00000100] col#038 v001 O0000 J/A+A/661/A5/table9*BlogBkgN        
[000003fc] col#039 v001 O0000 J/A+A/661/A5/table9*logBkgNMean     
[00000100] col#040 v001 O0000 J/A+A/661/A5/table9*logBkgN         
[000003fc] col#041 v001 O0000 J/A+A/661/A5/table9*logZ            
[000003ff] col#042 v004 OA051 J/A+A/661/A5/table9*PaperI          
[000003ff] col#043 v004 OA051 J/A+A/661/A5/table9*PaperII         
[000003ff] col#000 v000 OA002 J/A+A/661/A5/table10*recno           
[000003ff] col#001 v000 O2043 J/A+A/661/A5/table10*ID-SRC          
[000003fc] col#002 v001 O0003 J/A+A/661/A5/table10*z               
[00000338] col#003 v001 O0000 J/A+A/661/A5/table10*GammaKL         
[00000200] col#004 v001 O0000 J/A+A/661/A5/table10*e_Gamma         
[00000200] col#005 v001 O0000 J/A+A/661/A5/table10*E_Gamma         
[0000037c] col#006 v001 O0000 J/A+A/661/A5/table10*lognHKL         
[0000037c] col#007 v001 O0000 J/A+A/661/A5/table10*b_lognH         
[0000037c] col#008 v001 O0000 J/A+A/661/A5/table10*B_lognH         
[000003f8] col#009 v001 O0000 J/A+A/661/A5/table10*logPowNKL       
[000003f0] col#010 v001 O0000 J/A+A/661/A5/table10*b_logPowN       
[000003f0] col#011 v001 O0000 J/A+A/661/A5/table10*B_logPowN       
[00000338] col#012 v001 O0000 J/A+A/661/A5/table10*GammaBF         
[0000037c] col#013 v001 O0000 J/A+A/661/A5/table10*lognHBF         
[000003f0] col#014 v001 O0000 J/A+A/661/A5/table10*logPowNBF       
[000002fc] col#015 v001 O0003 J/A+A/661/A5/table10*FluxObsBFT      
[000002ff] col#016 v001 O0003 J/A+A/661/A5/table10*FluxObsMedT     
[000002ff] col#017 v001 O0000 J/A+A/661/A5/table10*b_FluxObsT      
[000002ff] col#018 v001 O0000 J/A+A/661/A5/table10*B_FluxObsT      
[000002fc] col#019 v001 O0000 J/A+A/661/A5/table10*b2_FluxObsT     
[000002fc] col#020 v001 O0000 J/A+A/661/A5/table10*B2_FluxObsT     
[000002f0] col#021 v001 O0003 J/A+A/661/A5/table10*FluxCBFT        
[000002f0] col#022 v001 O0003 J/A+A/661/A5/table10*FluxCMedT       
[00000200] col#023 v001 O0000 J/A+A/661/A5/table10*b_FluxCMedT     
[00000200] col#024 v001 O0000 J/A+A/661/A5/table10*B_FluxCMedT     
[00000200] col#025 v001 O0000 J/A+A/661/A5/table10*b2_FluxCMedT    
[00000200] col#026 v001 O0000 J/A+A/661/A5/table10*B2_FluxCMedT    
[00000338] col#027 v001 O0000 J/A+A/661/A5/table10*GammaMed        
[00000200] col#028 v001 O0000 J/A+A/661/A5/table10*b_GammaMed      
[00000200] col#029 v001 O0000 J/A+A/661/A5/table10*B_GammaMed      
[00000338] col#030 v001 O0000 J/A+A/661/A5/table10*GammaMean       
[00000338] col#031 v001 O0000 J/A+A/661/A5/table10*s_Gamma         
[0000037c] col#032 v001 O0000 J/A+A/661/A5/table10*lognHMed        
[00000200] col#033 v001 O0000 J/A+A/661/A5/table10*b_lognHMed      
[00000200] col#034 v001 O0000 J/A+A/661/A5/table10*B_lognHMed      
[0000037c] col#035 v001 O0000 J/A+A/661/A5/table10*lognHMean       
[0000037c] col#036 v001 O0000 J/A+A/661/A5/table10*s_lognH         
[000003f0] col#037 v001 O0000 J/A+A/661/A5/table10*logPowNMed      
[00000200] col#038 v001 O0000 J/A+A/661/A5/table10*b_logPowNMed    
[00000200] col#039 v001 O0000 J/A+A/661/A5/table10*B_logPowNMed    
[000003f0] col#040 v001 O0000 J/A+A/661/A5/table10*logPowNMean     
[000003f0] col#041 v001 O0000 J/A+A/661/A5/table10*s_logPowN       
[000003fc] col#042 v001 O0000 J/A+A/661/A5/table10*logBkgNMed      
[00000200] col#043 v001 O0000 J/A+A/661/A5/table10*b_logBkgNMed    
[00000200] col#044 v001 O0000 J/A+A/661/A5/table10*B_logBkgNMed    
[000003fc] col#045 v001 O0000 J/A+A/661/A5/table10*logBkgNMean     
[000002fc] col#046 v001 O0000 J/A+A/661/A5/table10*s_logBkgN       
[000003fc] col#047 v001 O0000 J/A+A/661/A5/table10*logZ            
[000003ff] col#048 v004 OA051 J/A+A/661/A5/table10*PaperI          
[000003ff] col#049 v004 OA051 J/A+A/661/A5/table10*PaperII         

----db1_query(0 'metaviz@VIZIR'):
[1726864351]   Select ucdid, name, class, explain From METAucd where ucdid=82
----db1_reset(0 'metaviz@VIZIR')
----db1_query(0 'metaviz@VIZIR'):
[1726864351]   Select famid, name, explain From METAfam where famid=1243
----db1_reset(0 'metaviz@VIZIR')
----db1_query(0 'metaviz@VIZIR'):
[1726864351]   Select ucdid, name, class, explain From METAucd where ucdid=74
----db1_reset(0 'metaviz@VIZIR')
----db1_query(0 'metaviz@VIZIR'):
[1726864351]   Select ucdid, name, class, explain From METAucd where ucdid=1
----db1_reset(0 'metaviz@VIZIR')
----db1_query(0 'metaviz@VIZIR'):
[1726864351]   Select famid, name, explain From METAfam where famid=179
----db1_reset(0 'metaviz@VIZIR')
----db1_query(0 'metaviz@VIZIR'):
[1726864351]   Select ucdid, name, class, explain From METAucd where ucdid=249
----db1_reset(0 'metaviz@VIZIR')
----db1_query(0 'metaviz@VIZIR'):
[1726864351]   Select famid, name, explain From METAfam where famid=1165
----db1_reset(0 'metaviz@VIZIR')
----db1_query(0 'metaviz@VIZIR'):
[1726864351]   Select ucdid, name, class, explain From METAucd where ucdid=248
----db1_reset(0 'metaviz@VIZIR')
----db1_query(0 'metaviz@VIZIR'):
[1726864351]   Select famid, name, explain From METAfam where famid=1135
----db1_reset(0 'metaviz@VIZIR')
----db1_query(0 'metaviz@VIZIR'):
[1726864351]   Select ucdid, name, class, explain From METAucd where ucdid=357
----db1_reset(0 'metaviz@VIZIR')
----db1_query(0 'metaviz@VIZIR'):
[1726864351]   Select famid, name, explain From METAfam where famid=1345
----db1_reset(0 'metaviz@VIZIR')
----db1_query(0 'metaviz@VIZIR'):
[1726864351]   Select ucdid, name, class, explain From METAucd where ucdid=62
----db1_reset(0 'metaviz@VIZIR')
----db1_query(0 'metaviz@VIZIR'):
[1726864351]   Select famid, name, explain From METAfam where famid=105
----db1_reset(0 'metaviz@VIZIR')
----db1_query(0 'metaviz@VIZIR'):
[1726864351]   Select famid, name, explain From METAfam where famid=156
----db1_reset(0 'metaviz@VIZIR')
----db1_query(0 'metaviz@VIZIR'):
[1726864351]   Select famid, name, explain From METAfam where famid=1167
----db1_reset(0 'metaviz@VIZIR')
----db1_query(0 'metaviz@VIZIR'):
[1726864351]   Select famid, name, explain From METAfam where famid=1137
----db1_reset(0 'metaviz@VIZIR')
----db1_query(0 'metaviz@VIZIR'):
[1726864351]   Select ucdid, name, class, explain From METAucd where ucdid=68
----db1_reset(0 'metaviz@VIZIR')
----db1_query(0 'metaviz@VIZIR'):
[1726864351]   Select famid, name, explain From METAfam where famid=109
----db1_reset(0 'metaviz@VIZIR')
----db1_query(0 'metaviz@VIZIR'):
[1726864351]   Select ucdid, name, class, explain From METAucd where ucdid=299
----db1_reset(0 'metaviz@VIZIR')
----db1_query(0 'metaviz@VIZIR'):
[1726864351]   Select famid, name, explain From METAfam where famid=97
----db1_reset(0 'metaviz@VIZIR')
----db1_query(0 'metaviz@VIZIR'):
[1726864351]   Select ucdid, name, class, explain From METAucd where ucdid=414
----db1_reset(0 'metaviz@VIZIR')
----db1_query(0 'metaviz@VIZIR'):
[1726864351]   Select famid, name, explain From METAfam where famid=577
----db1_reset(0 'metaviz@VIZIR')
----db1_query(0 'metaviz@VIZIR'):
[1726864351]   Select ucdid, name, class, explain From METAucd where ucdid=174
----db1_reset(0 'metaviz@VIZIR')
----db1_query(0 'metaviz@VIZIR'):
[1726864351]   Select famid, name, explain From METAfam where famid=930
----db1_reset(0 'metaviz@VIZIR')
----db1_query(0 'metaviz@VIZIR'):
[1726864351]   Select ucdid, name, class, explain From METAucd where ucdid=104
----db1_reset(0 'metaviz@VIZIR')
----db1_query(0 'metaviz@VIZIR'):
[1726864351]   Select ucdid, name, class, explain From METAucd where ucdid=945
----db1_reset(0 'metaviz@VIZIR')
----db1_query(0 'metaviz@VIZIR'):
[1726864351]   Select famid, name, explain From METAfam where famid=445
----db1_reset(0 'metaviz@VIZIR')
----db1_query(0 'metaviz@VIZIR'):
[1726864351]   Select ucdid, name, class, explain From METAucd where ucdid=106
----db1_reset(0 'metaviz@VIZIR')
----db1_query(0 'metaviz@VIZIR'):
[1726864351]   Select famid, name, explain From METAfam where famid=584
----db1_reset(0 'metaviz@VIZIR')
----db1_query(0 'metaviz@VIZIR'):
[1726864351]   Select ucdid, name, class, explain From METAucd where ucdid=946
----db1_reset(0 'metaviz@VIZIR')
----db1_query(0 'metaviz@VIZIR'):
[1726864351]   Select famid, name, explain From METAfam where famid=120
----db1_reset(0 'metaviz@VIZIR')
----db1_query(0 'metaviz@VIZIR'):
[1726864351]   Select ucdid, name, class, explain From METAucd where ucdid=947
----db1_reset(0 'metaviz@VIZIR')
----db1_query(0 'metaviz@VIZIR'):
[1726864351]   Select ucdid, name, class, explain From METAucd where ucdid=191
----db1_reset(0 'metaviz@VIZIR')
----db1_query(0 'metaviz@VIZIR'):
[1726864351]   Select famid, name, explain From METAfam where famid=1017
----db1_reset(0 'metaviz@VIZIR')
----db1_query(0 'metaviz@VIZIR'):
[1726864351]   Select ucdid, name, class, explain From METAucd where ucdid=355
----db1_reset(0 'metaviz@VIZIR')
----db1_query(0 'metaviz@VIZIR'):
[1726864351]   Select famid, name, explain From METAfam where famid=149
----db1_reset(0 'metaviz@VIZIR')
----db1_query(0 'metaviz@VIZIR'):
[1726864351]   Select ucdid, name, class, explain From METAucd where ucdid=2
----db1_reset(0 'metaviz@VIZIR')
----db1_query(0 'metaviz@VIZIR'):
[1726864351]   Select ucdid, name, class, explain From METAucd where ucdid=358
----db1_reset(0 'metaviz@VIZIR')
----db1_query(0 'metaviz@VIZIR'):
[1726864351]   Select ucdid, name, class, explain From METAucd where ucdid=7
----db1_reset(0 'metaviz@VIZIR')
----db1_query(0 'metaviz@VIZIR'):
[1726864351]   Select ucdid, name, class, explain From METAucd where ucdid=361
----db1_reset(0 'metaviz@VIZIR')
----db1_query(0 'metaviz@VIZIR'):
[1726864351]   Select ucdid, name, class, explain From METAucd where ucdid=79
----db1_reset(0 'metaviz@VIZIR')
----db1_query(0 'metaviz@VIZIR'):
[1726864351]   Select ucdid, name, class, explain From METAucd where ucdid=288
----db1_reset(0 'metaviz@VIZIR')
----db1_query(0 'metaviz@VIZIR'):
[1726864351]   Select famid, name, explain From METAfam where famid=1288
----db1_reset(0 'metaviz@VIZIR')
----db1_query(0 'metaviz@VIZIR'):
[1726864351]   Select famid, name, explain From METAfam where famid=1316
----db1_reset(0 'metaviz@VIZIR')
----db1_query(0 'metaviz@VIZIR'):
[1726864351]   Select ucdid, name, class, explain From METAucd where ucdid=112
----db1_reset(0 'metaviz@VIZIR')
----db1_query(0 'metaviz@VIZIR'):
[1726864351]   Select ucdid, name, class, explain From METAucd where ucdid=926
----db1_reset(0 'metaviz@VIZIR')
----db1_query(0 'metaviz@VIZIR'):
[1726864351]   Select famid, name, explain From METAfam where famid=665
----db1_reset(0 'metaviz@VIZIR')
----db1_query(0 'metaviz@VIZIR'):
[1726864351]   Select ucdid, name, class, explain From METAucd where ucdid=348
----db1_reset(0 'metaviz@VIZIR')
----db1_query(0 'metaviz@VIZIR'):
[1726864351]   Select ucdid, name, class, explain From METAucd where ucdid=925
----db1_reset(0 'metaviz@VIZIR')
----db1_query(0 'metaviz@VIZIR'):
[1726864351]   Select famid, name, explain From METAfam where famid=666
----db1_reset(0 'metaviz@VIZIR')
----db1_query(0 'metaviz@VIZIR'):
[1726864351]   Select ucdid, name, class, explain From METAucd where ucdid=84
----db1_reset(0 'metaviz@VIZIR')
----db1_query(0 'metaviz@VIZIR'):
[1726864351]   Select famid, name, explain From METAfam where famid=530
----db1_reset(0 'metaviz@VIZIR')
----db1_query(0 'metaviz@VIZIR'):
[1726864351]   Select ucdid, name, class, explain From METAucd where ucdid=416
----db1_reset(0 'metaviz@VIZIR')
----db1_query(0 'metaviz@VIZIR'):
[1726864351]   Select ucdid, name, class, explain From METAucd where ucdid=430
----db1_reset(0 'metaviz@VIZIR')
----db1_query(0 'metaviz@VIZIR'):
[1726864351]   Select famid, name, explain From METAfam where famid=1370
----db1_reset(0 'metaviz@VIZIR')
----db1_query(0 'metaviz@VIZIR'):
[1726864351]   Select ucdid, name, class, explain From METAucd where ucdid=134
----db1_reset(0 'metaviz@VIZIR')
----db1_query(0 'metaviz@VIZIR'):
[1726864351]   Select famid, name, explain From METAfam where famid=1249
----db1_reset(0 'metaviz@VIZIR')
----db1_query(0 'metaviz@VIZIR'):
[1726864351]   Select ucdid, name, class, explain From METAucd where ucdid=94
----db1_reset(0 'metaviz@VIZIR')
----db1_query(0 'metaviz@VIZIR'):
[1726864351]   Select famid, name, explain From METAfam where famid=122
----db1_reset(0 'metaviz@VIZIR')
----db1_query(0 'metaviz@VIZIR'):
[1726864351]   Select famid, name, explain From METAfam where famid=437
----db1_reset(0 'metaviz@VIZIR')
----db1_query(0 'metaviz@VIZIR'):
[1726864351]   Select ucdid, name, class, explain From METAucd where ucdid=20
----db1_reset(0 'metaviz@VIZIR')
----db1_query(0 'metaviz@VIZIR'):
[1726864351]   Select famid, name, explain From METAfam where famid=207
----db1_reset(0 'metaviz@VIZIR')
----db1_query(0 'metaviz@VIZIR'):
[1726864351]   Select ucdid, name, class, explain From METAucd where ucdid=6
----db1_reset(0 'metaviz@VIZIR')
----db1_query(0 'metaviz@VIZIR'):
[1726864351]   Select famid, name, explain From METAfam where famid=280
----db1_reset(0 'metaviz@VIZIR')
----db1_query(0 'metaviz@VIZIR'):
[1726864351]   Select ucdid, name, class, explain From METAucd where ucdid=81
----db1_reset(0 'metaviz@VIZIR')
----db1_query(0 'metaviz@VIZIR'):
[1726864351]   Select famid, name, explain From METAfam where famid=314
----db1_reset(0 'metaviz@VIZIR')
----db1_query(0 'metaviz@VIZIR'):
[1726864351]   Select ucdid, name, class, explain From METAucd where ucdid=321
----db1_reset(0 'metaviz@VIZIR')
----db1_query(0 'metaviz@VIZIR'):
[1726864351]   Select famid, name, explain From METAfam where famid=1247
----db1_reset(0 'metaviz@VIZIR')
----db1_query(0 'metaviz@VIZIR'):
[1726864351]   Select ucdid, name, class, explain From METAucd where ucdid=224
----db1_reset(0 'metaviz@VIZIR')
----db1_query(0 'metaviz@VIZIR'):
[1726864351]   Select ucdid, name, class, explain From METAucd where ucdid=80
----db1_reset(0 'metaviz@VIZIR')
----db1_query(0 'metaviz@VIZIR'):
[1726864351]   Select ucdid, name, class, explain From METAucd where ucdid=10
----db1_reset(0 'metaviz@VIZIR')
----db1_query(0 'metaviz@VIZIR'):
[1726864351]   Select famid, name, explain From METAfam where famid=1078
----db1_reset(0 'metaviz@VIZIR')
----db1_query(0 'metaviz@VIZIR'):
[1726864351]   Select ucdid, name, class, explain From METAucd where ucdid=125
----db1_reset(0 'metaviz@VIZIR')
----db1_query(0 'metaviz@VIZIR'):
[1726864351]   Select famid, name, explain From METAfam where famid=916
----db1_reset(0 'metaviz@VIZIR')
----db1_query(0 'metaviz@VIZIR'):
[1726864351]   Select ucdid, name, class, explain From METAucd where ucdid=363
----db1_reset(0 'metaviz@VIZIR')
----db1_query(0 'metaviz@VIZIR'):
[1726864351]   Select ucdid, name, class, explain From METAucd where ucdid=9
----db1_reset(0 'metaviz@VIZIR')
----db1_query(0 'metaviz@VIZIR'):
[1726864351]   Select ucdid, name, class, explain From METAucd where ucdid=351
----db1_reset(0 'metaviz@VIZIR')
----db1_query(0 'metaviz@VIZIR'):
[1726864351]   Select famid, name, explain From METAfam where famid=151
----db1_reset(0 'metaviz@VIZIR')
----db1_query(0 'metaviz@VIZIR'):
[1726864351]   Select ucdid, name, class, explain From METAucd where ucdid=352
----db1_reset(0 'metaviz@VIZIR')
----db1_query(0 'metaviz@VIZIR'):
[1726864351]   Select famid, name, explain From METAfam where famid=1349
----db1_reset(0 'metaviz@VIZIR')
----db1_query(0 'metaviz@VIZIR'):
[1726864351]   Select ucdid, name, class, explain From METAucd where ucdid=354
----db1_reset(0 'metaviz@VIZIR')
----opt1= 8
----inherit(u=used, h=hidden):
     [u] +source=J/A+A/661/A5
     [u] -ref=VIZ66eddbdf1b34c4
====inherit(): added 0 hidden fields
----free temporary files
----db1_close(0 'metaviz@VIZIR')

Cite/acknowledge VizieR catalogue
Rules of usage of VizieR data

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