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Messier 21

File:Trifid_and_Lagoon_Nebulae_Excerpt-_Messier_21_(noirlab2521ag).jpg · Wikimedia Commons · See Wikimedia Commons

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Messier 21

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Also known as M21

Open cluster

AI overview

Messier 21 is an open cluster of stars located about 4,000 light-years away in the constellation Sagittarius. It's one of many star clusters catalogued by astronomer Charles Messier in the 18th century and represents a group of young stars that formed together from the same cloud of gas and dust.

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Wikidata facts

Distance from Earth
1205
Image
M21a.jpg
Show 11 more facts
Commons category
Messier 21
catalog code
[KPS2012] MWSC 2796
time of discovery or invention
1764-06-05
Commons gallery
Messier 21
apparent magnitude
5.9
spectral class
I
right ascension
271.0542
declination
-22.4900
radial velocity
-14.7
right ascension component of proper motion
-0.24
declination component of proper motion
-2.20
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Article

Messier 21 or M21, also designated NGC 6531 or Webb's Cross, is an open cluster of stars located to the north-east of Sagittarius in the night sky, close to the Messier objects M20 to M25 (except M24). It was discovered and catalogued by Charles Messier on June 5, 1764. This cluster is relatively young and tightly packed. A few blue giant stars have been identified in the cluster, but Messier 21 is composed mainly of small dim stars. With a magnitude of 6.5, M21 is not visible to the naked eye; however, with the smallest binoculars it can be easily spotted on a dark night. The cluster is positioned near the Trifid Nebula (NGC 6514), but is not associated with that nebulosity. It forms part of the Sagittarius OB1 association.

This cluster is located 1,205 pc away from Earth with an extinction of 0.87. Messier 21 is around 6.6 million years old with a mass of 783.4 M☉. It has a tidal radius of 11.7 pc, with a nucleus radius of 1.6±0.1 pc and a coronal radius of 3.6±0.2 pc. There are at least 105±11 members within the coronal radius down to visual magnitude 15.5, including many early B-type stars. An estimated 40–60 of the observed low-mass members are expected to be pre-main-sequence stars, with 26 candidates identified based upon hydrogen alpha emission and the presence of lithium in the spectrum. The stars in the cluster do not show a significant spread in ages, suggesting that the star formation was triggered all at once.

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