Key Facts

Overview

Selohusa is a mid-sized asteroid orbiting between Mars and Jupiter in the main portion of the asteroid belt. NASA JPL has not classified Selohusa as potentially hazardous because its orbit does not bring it close to Earth.

Selohusa orbits the sun every 1,310 days (3.59 years), coming as close as 2.04 AU and reaching as far as 2.65 AU from the sun. Selohusa is about 2.7 kilometers in diameter, making it larger than 99% of asteroids, comparable in size to Mount Everest.

No Close Approaches

Selohusa's orbit is 1.04 AU from Earth's orbit at its closest point. This means that there is an extremely wide berth between this asteroid and Earth at all times.

Orbital simulations conducted by NASA JPL's CNEOS do not show any close approaches to Earth.

Images and Observations

Selohusa's orbit is determined by observations dating back to May 6, 1992. It was last officially observed on Feb. 13, 2023. The IAU Minor Planet Center records 1,852 observations used to determine its orbit.

Accessibility and Exploration

This asteroid is not considered a viable target for human exploration by the NHATS study.

Similar Objects

These objects have orbits that share similar characteristics to the orbit of Selohusa:

References

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Orbital Elements

  • Epoch: 2460200.5 JD
  • Semi-major axis: 2.345 AU
  • Eccentricity: 0.1299
  • Inclination: 6.11°
  • Longitude of Ascending Node: 193.09°
  • Argument of Periapsis: 174.79°
  • Mean Anomaly: 127.83°

Physical Characteristics

  • Diameter: 2.69400 km
  • Magnitude: 15.23
  • Albedo: 0.222

Derived Characteristics

  • Orbit Period: 1,310 days (3.59 years)
  • Avg. Orbit Speed: 19.47 km/s
  • Aphelion Distance: 2.65 AU
  • Perihelion Distance: 2.04 AU

Map Comparison

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Orbit Simulation

Sky Map

The position of Selohusa is indicated by a ◯ pink circle. Note that the object may not be in your current field of view. Use the controls below to adjust position, location, and time.

Size Rendering

The above comparison is an artistic rendering that uses available data on the diameter of Selohusa to create an approximate landscape rendering with Mount Everest in the background. This approximation is built for full-resolution desktop browsers. Shape, color, and texture of asteroid are imagined.