The location of the main sequence star in the night sky 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 object is compared to the celestial equator and is expressed in degrees. For WASP-45, the location is 00h 20m 57.00 and -35° 59` 54.00 .
WASP-45 has a spectral type of K2V. This means the star is a orange to red main sequence star.
WASP-45 has been calculated as 0.95 times bigger than the Sun.The Sun's radius is 695,800km, therefore the star's radius is an estimated 657,531.00.km. If you need the diameter of the star, you just need to multiple the radius by 2.
The star's metallicity is 0.120000, this value is the fractional amount of the star that is not Hydrogen (X) or Helium (Y). An older star would have a high metallicity whereas a new star would have a lower one.
The star is believed to be about 1.40 Billion years old. To put in context, the Sun is believed to be about five billion years old and the Universe is about 13.8 billion years old.
WASP-45 has an apparent magnitude of 12.00 which is how bright we see the star from Earth. Apparent Magnitude is also known as Visual Magnitude. 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.
|Primary / Proper / Traditional Name||WASP-45|
|Constellation's Main Star||No|
|Multiple Star System||No / Unknown|
|Star Type||main sequence Dwarf Star|
|Colour||orange to red|
|Age||1.40 Billion Years Old|
|Visual / Apparent Magnitude||12.00|
|Naked Eye Visible||Requires a 4.5 - 6 Inch Telescope - Magnitudes|
|Right Ascension (R.A.)||00h 20m 57.00|
|Declination (Dec.)||-35° 59` 54.00|
|Radius (x the Sun)||0.95|
|Name||Status||Mass (Jupiters)||Orbital Period (Days)||Eccentricity||Discovered||Semi-Major Axis||Periastron||Inclination|
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