Sidereal hour angle, used in celestial navigation, is similar to right ascension but increases westward rather than eastward. For example, if a star with RA = 1 h 30 m 00 s is at its meridian, then a star with RA = 20 h 00 m 00 s will be on the/at its meridian (at its apparent highest point) 18.5 sidereal hours later. To time the positions of objects in the sky. īecause right ascensions are measured in hours (of rotation of the Earth), they can be used Since a complete circle contains 24 h of right ascension or 360° ( degrees of arc), 1 / 24 of a circle is measured as 1 h of right ascension, or 15° 1 / 1440 of a circle is measured as 1 m of right ascension, or 15 minutes of arc (also written as 15′) and 1 / 86400 of a circle contains 1 s of right ascension, or 15 seconds of arc (also written as 15″). The line which passes through the highest point in the sky, called the meridian, is the projection of a longitude line onto the celestial sphere. Astronomers have chosen this unit to measure right ascension because they measure a star's location by timing its passage through the highest point in the sky as the Earth rotates. on the celestial equator) then at Earth's equator they are directly overhead (at zenith).Īny units of angular measure could have been chosen for right ascension, but it is customarily measured in hours ( h), minutes ( m), and seconds ( s), with 24 h being equivalent to a full circle. How high depends on their declination if 0° declination (i.e. On those dates at midnight, such objects will reach ("culminate" at) their highest point (their meridian). Īs seen from Earth (except at the poles), objects noted to have 12 h RA are longest visible (appear throughout the night) at the March equinox those with 0 h RA (apart from the sun) do so at the September equinox. Right ascension is measured continuously in a full circle from that alignment of Earth and Sun in space, that equinox, the measurement increasing towards the east. the First Point of Aries, which is the place on the celestial sphere where the Sun crosses the celestial equator from south to north at the March equinox and is currently located in the constellation Pisces. Right ascension is measured from the Sun at the March equinox i.e. Both right ascension and longitude measure an angle from a primary direction (a zero point) on an equator. Right ascension is the celestial equivalent of terrestrial longitude. Main article: Equatorial coordinate system It contrasts with oblique ascension, the point on the celestial equator that rises with any celestial object as seen from most latitudes on Earth, where the celestial equator intersects the horizon at an oblique angle. When paired with declination, these astronomical coordinates specify the location of a point on the celestial sphere in the equatorial coordinate system.Īn old term, right ascension ( Latin: ascensio recta) refers to the ascension, or the point on the celestial equator that rises with any celestial object as seen from Earth's equator, where the celestial equator intersects the horizon at a right angle. Right ascension (abbreviated RA symbol α) is the angular distance of a particular point measured eastward along the celestial equator from the Sun at the March equinox to the ( hour circle of the) point in question above the earth. Right ascension is measured eastward up to 24 h along the celestial equator from the primary direction. The primary direction of the system is the March equinox, the ascending node of the ecliptic (red) on the celestial equator (blue). Right ascension and declination as seen on the inside of the celestial sphere.
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