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VizieR

  
J/AJ/154/196
  Properties of comet 49P/Arend-Rigaux, 1984-2012 (Eisner+, 2017)
timeSerie
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1.J/AJ/154/196/table56Photometric fluxes, aperture abundances (table 5) and photometric production rates (table 6) for comet 49P/Arend-Rigaux (13 rows)

 
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  recno  Record number assigned by the VizieR team. Should Not be used for identification. (meta.record)
  Date (char) Observation date (UT) (YYYY-MMM-DD.dd) (time.epoch;obs)
  Ap arcsec [20/97.2] Aperture size (phys.angSize;instr.fov)
  log(rho) km [3.63/4.59] Log aperture size (instr.fov)
  logF(OH) [mW/m2] (n) [-11.92/-11.27] Log emission band flux for OH (in erg/cm2/s) (phot.flux)
  logF(NH) [mW/m2] (n) [-13.37/-11.9] Log emission band flux for NH (in erg/cm2/s) (phot.flux)
  logF(CN) [mW/m2] (n) [-12.73/-11.46] Log emission band flux for CN (in erg/cm2/s) (phot.flux)
  logF(C3) [mW/m2] (n) [-12.46/-11.53] Log emission band flux for C3 (in erg/cm2/s) (phot.flux)
  logF(C2) [mW/m2] [-13/-11.58] Log emission band flux for C2 (in erg/cm2/s) (phot.flux)
  logF(UV) [10-2W/m2/nm](n) [-15.61/-14.13] Log continuum flux in UV filter (in erg/cm2/s/Å) (Note G1)   (phot.flux;em.UV)
  logF(B) [10-2W/m2/nm](n) [-14.57/-13.97] Log continuum flux in blue filter (in erg/cm2/s/Å) (Note G1)   (phot.flux.density;em.opt)

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  logF(G) [10-2W/m2/nm] [-14.59/-13.8] Log continuum flux in green filter (in erg/cm2/s/Å) (Note G1)   (phot.flux.density;em.opt)
  logM(rho)OH [-] (n) [29.99/31.36] OH aperture abundance (in molecule) (phys.abund)
  logM(rho)NH [-] (n) [27.04/29.2] NH aperture abundance (in molecule) (phys.abund)
  logM(rho)CN [-] (n) [26.98/28.99] CN aperture abundance (in molecule) (phys.abund)
  logM(rho)C3 [-] (n) [26.92/28.44] C3 aperture abundance (in molecule) (phys.abund)
  logM(rho)C2 [-] (n) [26.73/28.74] C2 aperture abundance (in molecule) (phys.abund)
  DT d [-75.89/76.28] Time since perihelion {Detla}T (time.interval)
  log(rH) [AU] [0.138/0.221] Log heliocentric distance (pos.distance;pos.heliocentric)
  logQ(OH) [s-1] (n) [26.79/27.45] OH production rate (in molecule/s) (stat.fit.param)
  E_logQ(OH) [s-1] (n) [0.03/0.13] Upper limit uncertainty in logQ(OH) (Note 1)   (stat.error;stat.max)
  logQ(NH) [s-1] (n) [24.04/25.18] NH production rate (in molecule/s) (stat.fit.param)
  E_logQ(NH) [s-1] (n) [0.01/0.17] Upper limit uncertainty in logQ(NH) (Note 1)   (stat.error;stat.max)
  logQ(CN) [s-1] (n) [23.95/24.64] CN production rate (in molecule/s) (stat.fit.param)

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(n) indicates a possible blank or NULL column(i)indexed column
  E_logQ(CN) [s-1] (n) [0.02/0.08] Upper limit uncertainty in logQ(CN) (Note 1)   (stat.error;stat.max)
  logQ(C3) [s-1] [23.53/24.38] C3 production rate (in molecule/s) (stat.fit.param)
  E_logQ(C3) [s-1] [0/0.16] Upper limit uncertainty in logQ(C3) (Note 1)   (stat.error;stat.max)
  logQ(C2) [s-1] (n) [1.73/24.58] C2 production rate (in molecule/s) (stat.fit.param)
  E_logQ(C2) [s-1] (n) [0.04/0.14] Upper limit uncertainty in logQ(C2) (Note 1)   (stat.error;stat.max)
  logA(UV) [cm] (n) [0.64/1.93] Now standard proxy for dust production in UV filter (Note G1)   (stat.fit.param)
  E_logA(UV) [cm] (n) [0.02/0.54] Upper limit uncertainty in logA(UV) (Note 1)   (stat.error;stat.max)
  logA(B) [cm] (n) [1.1/1.94] Now standard proxy for dust production in blue filter (Note G1)   (stat.fit.param)
  E_logA(B) [cm] (n) [0.01/0.16] Upper limit uncertainty in logA(B) (Note 1)   (stat.error;stat.max)
  logA(G) [cm] (n) [1.06/1.99] Now standard proxy for dust production in green filter (Note G1)   (stat.fit.param)
  E_logA(G) [cm] (n) [0.01/0.14] Upper limit uncertainty in logA(G) (Note 1)   (stat.error;stat.max)
  logQ(H2O) [-] (n) [26.82/27.5] Water production rate (stat.fit.param)

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