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Zeta Telescopii, HD169767, HIP90568, HR6905

Zeta Telescopii is a white to yellow giant star that can be located in the constellation of Telescopium. The star can be seen with the naked eye, that is, you don't need a telescope/binoculars to see it.

Zeta Telescopii's Alternative Names

Zeta Telescopii is the Bayer Classification for the star. The Id of the star in the Yale Bright Star Catalogue is HR6905. HIP90568 is the reference name for the star in the Hipparcos Star Catalogue. The Id of the star in the Henry Draper catalogue is HD169767.

More details on star alternative names can be found at Star Names.

Location of Zeta Telescopii

The location of the star in the galaxy is determined by the Right Ascension (R.A.) and Declination (Dec.), these are equivalent to the Longitude and Latitude on the Earth. The Right Ascension is how far expressed in time (hh:mm:ss) the star is along the celestial equator. If the R.A. is positive then its eastwards. The Declination is how far north or south the star is compared to the celestial equator and is expressed in degrees. For Zeta Telescopii, the location is 18h 28m 49.74 and -49° 04` 12.1 .

Proper Motion of Zeta Telescopii

All stars like planets orbit round a central spot, in the case of planets, its the central star such as the Sun. In the case of a star, its the galactic centre. The constellations that we see today will be different than they were 50,000 years ago or 50,000 years from now. Proper Motion details the movements of these stars and are measured in milliarcseconds. The star is moving -228.66 ± 0.12 miliarcseconds/year towards the north and 139.10 ± 0.21 miliarcseconds/year east if we saw them in the horizon. The Radial Velocity, that is the speed at which the star is moving away/towards us is -30.60000 km/s with an error of about 0.70 km/s .

Zeta Telescopii Luminosity

Luminosity is the amount of energy that a star pumps out and its relative to the amount that our star, the Sun gives out. The figure of 41.3200000 that I have given is based on the value in the Simbad Hipparcos Extended Catalogue at the University of Strasbourg from 2012.

Physical Properties (Colour, Temperature) of Zeta Telescopii

Zeta Telescopii has a spectral type of G8/K0III. This means the star is a white to yellow giant star. The star is 7364.00000000 Parsecs from the Galactic Centre or terms of Light Years is 24018.6686521600000000s. The star has a B-V Colour Index of 0.99 which means the star's temperature has been calculated using information from Morgans @ Uni.edu at being 4,868 Kelvin.

Zeta Telescopii Radius has been calculated as being 7.77 times bigger than the Sun.The Sun's radius is 695,800km, therefore the star's radius is an estimated 5,403,504.27.km. However with the 2007 release of updated Hipparcos files, the radius is now calculated at being round 7.69. The figure is derived at by using the formula from SDSS and has been known to produce widely incorrect figures. The star's Iron Abundance is -0.22 with an error value of 0.05 Fe/H with the Sun has a value of 1 to put it into context.

Zeta Telescopii Apparent and Absolute Magnitudes

Zeta Telescopii has an apparent magnitude of 4.10 which is how bright we see the star from Earth. Apparent Magnitude is also known as Visual Magnitude. If you used the 1997 Parallax value, you would get an absolute magnitude of 1.14 If you used the 2007 Parallax value, you would get an absolute magnitude of 1.16. Magnitude, whether it be apparent/visual or absolute magnitude is measured by a number, the smaller the number, the brighter the Star is. Our own Sun is the brightest star and therefore has the lowest of all magnitudes, -26.74. A faint star will have a high number.

Distance to Zeta Telescopii

Using the original Hipparcos data that was released in 1997, the parallax to the star was given as 25.60 which gave the calculated distance to Zeta Telescopii as 127.41 light years away from Earth or 39.06 parsecs. It would take a spaceship travelling at the speed of light, 127.41 years to get there. We don't have the technology or spaceship that can carry people over that distance yet.

In 2007, Hipparcos data was revised with a new parallax of 25.84 which put Zeta Telescopii at a distance of 126.22 light years or 38.70 parsecs. It should not be taken as though the star is moving closer or further away from us. It is purely that the distance was recalculated.

The star's Galacto-Centric Distance is 7,364.00 Parsecs or 24,018.67 Light Years. The Galacto-Centric Distance is the distance from the star to the Centre of the Galaxy which is Sagittarius A*.

Source of Information

The source of the information if it has a Hip I.D. is from Simbad, the Hipparcos data library based at the University at Strasbourg, France. Hipparcos was a E.S.A. satellite operation launched in 1989 for four years. The items in red are values that I've calculated so they could well be wrong. Information regarding Metallicity and/or Mass is from the E.U. Exoplanets. The information was obtained as of 12th Feb 2017.

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Zeta Telescopii Facts

Visual Facts

Alternative NamesHD 169767, HIP 90568, HR 6905
Star TypeGiant Star
GalaxyMilky Way
Absolute Magnitude1.14 / 1.16
Visual / Apparent Magnitude4.10
Naked Eye VisibleYes - Magnitudes
Right Ascension (R.A.)18h 28m 49.74
Declination (Dec.)-49° 04` 12.1
Galactic Latitude-16.68 degrees
Galactic Longitude345.82 degrees
1997 Distance from Earth25.60 Parallax (milliarcseconds)
 127.41 Light Years
 39.06 Parsecs
2007 Revised Distance from Earth25.84 Parallax (milliarcseconds)
 126.22 Light Years
 38.70 Parsecs
Galacto-Centric Distance24,018.67 Light Years / 7,364.00 Parsecs
Proper Motion Dec.-228.66 ± 0.12 milliarcseconds/year
Proper Motion RA.139.10 ± 0.21 milliarcseconds/year
B-V Index0.99
Radial Velocity-30.60 ± 0.70 km/s
Iron Abundance-0.22 ± 0.05 Fe/H
Semi-Major Axis7248.00
Stellar Luminosity (Lsun)41.32
Spectral TypeG8/K0III
Colour(G) White to Yellow

Estimated Facts

Calculated Effective Temperature4,868 Kelvin

Sources and Links

SIMBAD SourceLink

Location of Zeta Telescopii in Telescopium

Zeta Telescopii (Zeta Telescopii) Location in Telescopium

The map was generated using Night Vision, an awesome free application by Brian Simpson.

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