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Trash star 3 EP

HIP 94226

RA 287.7226° · Dec 34.1192° · star

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Score breakdown

· 1 badge
3 pts · Trash
Trash 15 pts → Common
  • Star +3
Total score 3

12 more points to reach Common.

Badges

  • Star · +3

Trivia

Sense of scale

  • In perspective. Far away by human standards, yet still a local address inside the Milky Way's spiral arms.

Find it in the sky

  • How to spot it. At magnitude 11.5 you'll want a small backyard telescope, over in Lyra.
  • Northern sky. It rides the northern half of the sky — an easier target the further north you are.
  • Best time of year. It stands highest in the middle of the night around July — that's when to go looking.

Could we get there?

  • Verdict. Hopelessly far for any craft humanity can build today.

Getting there

  • Aboard Voyager 1. ≈ 5 million years at Voyager 1's speed (17 km/s).
  • Fastest probe ever. ≈ 446.3 thousand years even at the Parker Solar Probe's 192 km/s.
  • At 10% light speed. ≈ 2859 years in a starship at a tenth of light speed.

Properties

absmag
6.756
constellation
Lyr
dist ly
285.8509
luminosity
0.1728
mag
11.47
name
HIP 94226

About HIP 94226

HIP 94226 is a trash star. It lies about 285.9 light-years from Earth, sits in the constellation Lyr and shines at apparent magnitude 11.47.

It is a genuine dim bulb — only about 17.0% of the Sun's light output.

How to see it

Look for HIP 94226 in the constellation Lyr. At apparent magnitude 11.47, a small backyard telescope will bring it into view.

Like any astronomical target, HIP 94226 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 HIP 94226 is a trash star

HIP 94226 scores 3 points on Spacedle's rarity scale, which places it in the trash tier. Another 12 points would lift it into a rarer tier.

That score comes from 1 science badge — Star — 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.