Illustration of Earth with several asteroids passing at different distances, one flagged as potentially hazardous

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(2012 LE11)

Designation: 2012 LE11 · NASA id: 3605759

Estimated diameter: 629 – 1,406 meters (absolute magnitude H = 18.13) · JPL Small-Body Database →

Why is one asteroid “hazardous” when closer ones are not?

Because the flag has nothing to do with how close it came on the day. NASA marks an object a Potentially Hazardous Asteroid only if both of these are true of its orbit and its size:

  • Its orbit can bring it within 0.05 AU of Earth’s — about 7.5 million km. This is the Minimum Orbit Intersection Distance, the closest the two paths ever come, not the distance on any given pass.
  • It is big enough to matter — absolute magnitude 22.0 or brighter, which is roughly 140 metres across and up. That threshold is a planning convention, not a physical boundary: it is about the size at which an impact could do regional damage. Smaller objects are not harmless, they are simply outside this definition — the Chelyabinsk object of 2013 was around 20 metres and injured about 1,500 people with the shock wave from its airburst, without ever reaching the ground intact.

The two terms: AU — astronomical unit, the average Earth–Sun distance, 149,597,871 km. 0.05 AU is about 7.5 million km.
MOID — minimum orbit intersection distance, the closest the two orbits ever come, whatever the timing. See the glossary for NEO, PHA and H.

So a large rock passing at 39 million km today can be flagged, because on some future orbit it could come far nearer — while a pebble skimming past at 4 million km is not, because it would never reach the ground.

Three objects that all passed Earth on 30 August 2026 make the point better than any definition:

Object Size Orbit’s closest to Earth’s Missed by, that day Flagged
2013 JR28 122–272 m 5.3 M km (0.035 AU) 39.2 M km Yes — both tests pass
2012 LE11 629–1,406 m 23.3 M km (0.156 AU) 26.1 M km No — orbit never gets near enough
2007 EK 3.7–8.2 m 198,000 km (0.0013 AU) 4.2 M km No — far too small

The middle one is five times larger than the flagged one and passed closer on the day, but its path can never come within 23 million km of ours. The last one’s orbit crosses inside the Moon’s distance — nearer than any other object here — and it is still not hazardous, because at a few metres across it would burn up long before it landed.

“Potentially hazardous” is a watchlist criterion, not a prediction. None of these is on a collision course; the label means an object is worth keeping precise track of over the coming centuries.

Orbital Data

Orbit class: AMO — Near-Earth asteroid orbits similar to that of 1221 Amor
1.017 AU < q (perihelion) < 1.3 AU

Orbital period1,705.7 days (4.67 years)
Eccentricity.6000093995607518 (0 = circular, closer to 1 = more elongated)
Semi-major axis2.79382630077805 AU
Inclination10.31431880263519° (tilt of its orbit vs. Earth's)
Perihelion distance1.117504259571176 AU (closest approach to the Sun)
Aphelion distance4.470148341984924 AU (farthest from the Sun)
Minimum Orbit Intersection Distance0.15563 AU = 23,281,617 km
(closest its orbit path ever comes to Earth's, regardless of timing)
Ascending node longitude181.487776036429°
Argument of perihelion133.8856626564152°
Mean anomaly / motion303.8086360185663° / .2110595324552016°/day
Jupiter Tisserand invariant3.016 (helps distinguish asteroids from comets)
Reference epoch / equinoxJD 2461000.5 / J2000
Orbit determined2026-04-26 06:21:14
Observed2012-06-14 to 2026-04-25 (5063 day arc, 606 observations used)
Orbit uncertainty0 (0 = best known, 9 = least certain)

Close Approach History

Every close approach NASA has on record for this object — 12 total.

Why does it pass Juptr, Earth and Mars? Doesn’t it orbit just one?

It orbits the Sun. Not Earth, and not Venus. The column above does not say what the asteroid goes around — it says which planet a given close approach was to. 9 of them were approaches to Juptr, 2 of them were approaches to Earth and 1 of them were approaches to Mars.

This one’s path runs from 1.118 AU at its closest to the Sun out to 4.470 AU at its farthest. For scale, Venus orbits at about 0.72 AU and Earth at 1.00 AU — so an orbit spanning that range crosses the path of every planet in between, once on the way out and once on the way back.

Crossing a planet’s path is not the same as meeting the planet. Almost every time the asteroid crosses, that planet is somewhere else along its own orbit. A close approach is logged only on the rare occasions when both happen to arrive at the crossing point at roughly the same time — which is why the dates below are scattered rather than regular. This object takes 1705.7 days to go round, against Earth’s 365.25, so the two drift in and out of step over years rather than repeating on a neat cycle.

The Minimum Orbit Intersection Distance in the table above (0.1556 AU) is the closest the two paths ever come. The miss distances below are how far apart the two bodies actually were on the day, which is almost always very much larger.

next approach: 2038-09-15

Date Passed near Velocity (km/h) Miss distance
2169-04-02 Juptr 24572.50 226,336,068 km
589 LD
2145-08-27 Juptr 16865.86 162,728,686 km
423 LD
2121-12-07 Juptr 14719.43 162,987,641 km
424 LD
2098-03-23 Juptr 18382.22 216,498,995 km
563 LD
2038-09-15 next Juptr 22818.86 216,020,587 km
562 LD
2026-08-30 Earth 36258.74 26,064,307 km
67.8 LD
2015-01-20 Juptr 15634.61 163,854,745 km
426 LD
1991-04-17 Juptr 14611.51 169,187,058 km
440 LD
1967-08-20 Juptr 21568.08 245,717,020 km
639 LD
1947-06-15 Mars 49448.03 14,212,597 km
37.0 LD
1942-09-07 Earth 43968.82 28,292,300 km
73.6 LD
1908-02-28 Juptr 18947.33 191,296,886 km
498 LD

Looked up from NASA's NeoWs API and cached — last refreshed 2026-09-02T15:14:28.612440+00:00.