Where is it now
- Distance from Sun
- 0.996 AU
- True anomaly
- 327.66°
- Distance from Earth
- 0.308 AU
- As of
- 11 October 2026
Two-body Kepler propagation — accurate to ~0.1% for major planets over decades, less so for highly-perturbed bodies. Use JPL Horizons for high precision.
In the sky
- Right ascension
- 18h 03m 47s
- Declination
- +33° 26′ 12″
- Constellation
- Hercules
- Distance from Earth
- 0.31 AU
- Elongation from the Sun
- 80.64° — well clear of the Sun
Favours the northern hemisphere; low or below the horizon from far south.
From your location
See how high it is right now, whether it is up after civil twilight, and when it rises and sets where you are.
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Two-body approximation, good to about a degree for the planets — enough to find the constellation and know whether it is up.
Orbital elements
- Semi-major axis
- 1.266 AU
- Eccentricity
- 0.2366
- Inclination
- 16.29°
- Orbital period
- 520.2 days
- Perihelion
- 0.966 AU
- Aphelion
- 1.565 AU
- Longitude of ascending node
- 255.15°
- Argument of periapsis
- 145.15°
- Epoch · J2000
- 2461200.5
- Orbit class · APO
- Apollo
- Earth MOID · 5.4 LD
- 0.0139 AU
- Tisserand (Jupiter)
- 5.03
Orbit quality
Orbit very well determined (uncertainty code 0).
- Observations used
- 346
- Data arc
- 10.2 years
- First observed
- 3 July 2016
- Last observed
- 14 September 2026
- Residual RMS
- 0.42 ″
- Solution · Otto Matic
- 15 September 2026
Visual & observation
- Absolute magnitude (H)
- 19.86
Discovery & classification
Close approaches 16 on record
Top-down view of the ecliptic, Earth at the centre, for the 2026-12-08 18:43 UTC close approach of 2016 NV. Catalogue miss distance 14.3 LD · 5.48 × 10⁶ km. The curve is the geocentric path from 2026-12-05 to 2026-12-11, with a mark at UTC midnights and an arrow for the direction of motion. The circle is the Moon’s mean orbit; the Moon is plotted at closest approach. A ray shows the Sun’s direction. The labelled distance is the full separation. The drawn radius is the part that lies in the ecliptic plane. The path is a geocentric ecliptic ephemeris from JPL Horizons. The Moon’s position is approximate. The inset is a heliocentric view and is approximate.
| When (UTC) | Body | Distance | Lunar distances | Relative speed |
|---|---|---|---|---|
| 2026-12-08 18:43:00 | Earth | 0.0366 AU | 14.3 LD | 10.4 km/s |
| 2036-12-03 14:12:00 | Earth | 0.0373 AU | 14.5 LD | 9.6 km/s |
| 2073-12-16 20:48:00 | Earth | 0.1722 AU | 67.0 LD | 12.9 km/s |
| 2083-12-06 14:54:00 | Earth | 0.0143 AU | 5.6 LD | 9.9 km/s |
| 2110-12-19 13:53:00 | Earth | 0.1972 AU | 76.8 LD | 13.4 km/s |
| 2120-12-03 06:11:00 | Earth | 0.0562 AU | 21.9 LD | 9.5 km/s |
| 2127-05-30 13:58:00 | Mars | 0.0575 AU | 22.4 LD | 7.7 km/s |
| 2147-12-06 23:04:00 | Earth | 0.0204 AU | 7.9 LD | 9.8 km/s |
| 2164-12-13 05:13:00 | Earth | 0.093 AU | 36.2 LD | 11.3 km/s |
| 2191-11-25 05:40:00 | Earth | 0.1536 AU | 59.8 LD | 9.4 km/s |
Next ten from today. 1 lunar distance = 384,400 km. Source: JPL close-approach data.
Sources
- visual properties: JPL SBDB (lookup)
- orbital elements: JPL SBDB