← Back to dex
Common cluster 19 EP

NGC 2467

RA 118.0976° · Dec -26.4433° · openngc

Loading sky survey…
🌌 View in 3D star map
Tonight’s visibility

Computing the sky for your location…

Score breakdown

· 2 badges
19 pts · Common
Common 22 pts → Uncommon
  • Cluster still wrapped in its gas +12
  • Star cluster +7
Total score 19

3 more points to reach Uncommon.

Badges

  • Star cluster · +7
  • Cluster still wrapped in its gas · +12

Trivia

What it actually is

  • What it actually is. A star cluster still wrapped in the nebula that made it — newborn stars lighting up their own birth cloud.

Find it in the sky

  • Where to look. You'll find it in the constellation Puppis.
  • Southern sky. It rides the southern half of the sky — an easier target the further south you are.
  • Best time of year. It stands highest in the middle of the night around January — that's when to go looking.

Its true colour

  • Its true colour. The stars are blue-white and brand new; the gas around them glows red, ionised by their ultraviolet glare.

How we came to know it

  • The New General Catalogue. Its NGC number comes from J. L. E. Dreyer's 1888 catalogue, itself built on decades of sky sweeps by William Herschel and his sister Caroline.

Properties

constellation
Pup
dso type
Cl+N
name
NGC 2467
radial velocity kms
56
redshift
0.0002
size arcmin
4.2

About NGC 2467

NGC 2467 is a common cluster. It sits in the constellation Pup.

A star cluster still wrapped in the nebula that made it — newborn stars lighting up their own birth cloud.

How to see it

Look for NGC 2467 in the constellation Pup.

Like any astronomical target, NGC 2467 is best seen from a dark site away from city lights, and when it is above the horizon depends on your latitude and the time of year. The visibility panel above works out tonight's viewing window for your saved location.

Why NGC 2467 is a common cluster

NGC 2467 scores 19 points on Spacedle's rarity scale, which places it in the common tier. Another 3 points would lift it into a rarer tier.

That score comes from 2 science badges — Star cluster and Cluster still wrapped in its gas — each earned for a real, measurable property of the object. Rarity on Spacedle is never random: the more remarkable an object's astrophysics, the more badges it collects, the higher it scores, and the rarer it ranks.