Menu
9.9 h/s
Lade Planeten…
Sonnensystem-Planetarium
Links ziehen zum Drehen Rechts ziehen zum Verschieben Scrollen zum Zoomen Planet anklicken zum Folgen Space Zeit abspielen / pausieren Ansichten & Touren oben rechts Umlaufbahnen sind komprimiert — aktiviere „Wahrer Maßstab“ in den Einstellungen für echte Proportionen
Planet antippen für Details Ziehen zum Drehen Zusammenziehen zum Zoomen Mit zwei Fingern ziehen zum Verschieben
Planet anklicken für Details. Ziehen zum Drehen, Scrollen zum Zoomen. Planet antippen für Details. Zusammenziehen zum Zoomen.
  Richte dein Handy auf den Himmel!

HD 110014 planetary system

HD 110014 is an orange main-sequence star of spectral type K2 III approximately 329 light-years from Earth (100.76 parsecs). It hosts 1 confirmed exoplanet.

Host star

Name
HD 110014
Spectral type
K2 III
Effective temperature
4,445 K
Mass
2.17 M☉ (solar masses)
Radius
20.90 R☉ (solar radii)
Distance
100.76 pc (329 ly)
Hipparcos catalog
HIP 61740

Confirmed planets (1)

Planet Class Mass (M⊕) Radius (R⊕) Period (d) Distance (AU) Eq. temp (K) Discovered
HD 110014 b Neptune-like 3524.59 12.40 835.48 2.1400 2009

The planets in detail

HD 110014 b is a Neptune-like world with about 12.40 Earth radii and 3524.59 Earth masses. It orbits HD 110014 at 2.1400 AU with a 2.3-Earth-year orbit, and no published equilibrium temperature. Its orbit is notably eccentric (e = 0.46), meaning the distance to its star — and the irradiation it receives — varies substantially over each year. It was confirmed in 2009 via radial velocity (Doppler) measurements.

Discovery

The single planet in the HD 110014 system was confirmed in 2009 using radial velocity (Doppler) measurements. Detection facilities: La Silla Observatory.

Observing from Earth

Exoplanets cannot be resolved visually with amateur telescopes — the host star's glare is overwhelming and even space-based direct imaging requires sophisticated coronagraphs. What you can observe is the host star itself at right ascension 189.8112°, declination -7.9957°. Use the 3D orrery above to inspect orbital geometry, planetary scale, and the habitable-zone overlay — the orbits are computed from the published Keplerian elements and animate at user-controlled time rates.