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HD 199802


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Good Abundances from Bad Spectra: II. Application and a New Stellar Color-Temperature Calibration
Stellar spectra derived from current multiple-object fiber-fedspectroscopic radial-velocity surveys, of the type feasible with, amongother examples, AUTOFIB, 2dF, HYDRA, NESSIE, and the Sloan survey,differ significantly from those traditionally used for determination ofstellar abundances. The spectra tend to be of moderate resolution(around 1 A) and signal-to-noise ratio (around 10-20 per resolutionelement), and cannot usually have reliable continuum shapes determinedover wavelength ranges in excess of a few tens of Angstroms.Nonetheless, with care and a calibration of stellar effectivetemperature from photometry, independent of the spectroscopy, reliableiron abundances can be derived. We have developed techniques to extracttrue iron abundances and surface gravities from low signal-to-noiseratio, intermediate resolution spectra of G-type stars in the 4000-5000Awavelength region. The theoretical basis and calibration using syntheticspectra are described in detail in another paper (Jones, Gilmore andWyse, 1995). The practical application of these techniques toobservational data, which requires some modification from the ideal caseof synthetic data, is given in the present paper. An externally-derivedestimate of stellar effective temperature is required in order toconstrain parameter space sufficiently; a new derivation of the V-Ieffective temperature relation is thus an integral part of the analysispresented here. We have derived this relationship from analysis ofavailable relevant data for metal-poor G dwarfs, the first suchcalibration. We test and calibrate our techniques by analysis of spectraof the twilight sky, of member stars of the cluster M67, and of a set offield stars of known metallicity. We show that this method, combinedwith our new color-temperature calibration, can provide true ironabundances, with an uncertainty of less than 0.2 dex over the range ofmetallicty found in the Galactic thick and thin disks, from spectraobtained with fiber-fed spectrographs. (SECTION: Stars)

Vitesses radiales. Catalogue WEB: Wilson Evans Batten. Subtittle: Radial velocities: The Wilson-Evans-Batten catalogue.
We give a common version of the two catalogues of Mean Radial Velocitiesby Wilson (1963) and Evans (1978) to which we have added the catalogueof spectroscopic binary systems (Batten et al. 1989). For each star,when possible, we give: 1) an acronym to enter SIMBAD (Set ofIdentifications Measurements and Bibliography for Astronomical Data) ofthe CDS (Centre de Donnees Astronomiques de Strasbourg). 2) the numberHIC of the HIPPARCOS catalogue (Turon 1992). 3) the CCDM number(Catalogue des Composantes des etoiles Doubles et Multiples) byDommanget & Nys (1994). For the cluster stars, a precise study hasbeen done, on the identificator numbers. Numerous remarks point out theproblems we have had to deal with.

A Photometric Search for Halo Binaries - Part Two - Results
Abstract image available at:http://adsabs.harvard.edu/cgi-bin/nph-bib_query?1983AJ.....88..623C&db_key=AST

A photometric search for halo binaries. I - New observatinal data. II - Results
Carney (1982) has reported JHK photometry for 76 Hyades dwarfs. Inconnection with the present investigation, results of similarobservations of field halo stars are provided along with some uvbyphotometry. In addition, older spectrophotometric and photometric dataused previously for temperature determinations have been collected. Theinfrared and uvby data were obtained primarily with the objective ofidentifying binaries with dissimilar components among a sample of fieldhalo dwarfs by comparing metallicity insensitive blue and infraredcolors. Attention is given to 111 spectrophotometric scans of 89 stars,67 uvby measures of 41 stars, 127 UBV measures of 87 stars, 147 (RI)Jmeasures of 127 stars, 8 JHK measures of eight stars in the 'HCO'system, and 212 JHK measures of 137 stars in the 'CIT' system. Themajority of these stars are dwarfs, and most of them are metal poor. Theresults of a search for binaries in 71 halo dwarf stars are alsopresented, taking into account a few other dwarfs of special interest.

Photometry of Metal Weak Stars
Not Available

Abundance analyses of metal-poor stars. II - Yellow spectra of five dwarfs
The paper is the second in a series aimed at determining elementalabundances in metal-poor stars. It describes in detail several aspectsimportant to the accuracy of the analysis of moderately and extremelymetal-poor dwarfs of temperatures in the range 6200-5000 K. Fivehigh-velocity metal-poor dwarfs - HD 84937, HD 103095, HD 114762, HD132142, and HD 140283 - are analyzed. A procedure is presented forconverting the photoelectrical spectra into intensity versus wavelengthinformation. The use of a relationship between equivalent width dividedby wavelength and central residual intensity to measure equivalent widthis examined, where width errors are also evaluated. Various argumentsare presented that the arc gf-values, the most extensive and widely usedset of Fe I measurements available, contain systematic errors whichdepend on both the excitation level and the strength of a giventransition. This possibility greatly limits the number of Fe I linesthat can be reliably used to determine iron abundances in extremelyweak-lined stars. Pertinent graphs and tables are included.

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Observation and Astrometry data

Constellation:Υδροχόος
Right ascension:20h59m26.91s
Declination:+01°05'52.0"
Apparent magnitude:8.882
Proper motion RA:-72.3
Proper motion Dec:-115.3
B-T magnitude:9.547
V-T magnitude:8.937

Catalogs and designations:
Proper Names   (Edit)
HD 1989HD 199802
TYCHO-2 2000TYC 513-1345-1
USNO-A2.0USNO-A2 0900-19251733

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