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Entering orbit…
Habitability
37/ 100
Extremely Harsh

Reading Kepler-482 b’s atmosphere

Dominant elements: H, O, Si, Fe, N, CThis is what a telescope would measure while Kepler-482 b crosses in front of its star: starlight passes through the atmosphere and spreads into a rainbow band. Each dark line marks a wavelength the atmosphere absorbed.Every element absorbs its own signature wavelengths — hydrogen always darkens the same two spots, calcium another pair, and so on. Astronomers match the lines in a real spectrum against a library of these signatures to say what an atmosphere is made of, light-years away, without ever visiting. A deeper line generally means more of that element is present.Kepler-482 b sits about 1021 light-years away, found by the transit method. Most catalogued distances trace back to parallax: as Earth orbits the Sun, a nearby star appears to shift very slightly against the distant background stars, and the size of that shift gives its distance directly.

Kepler-482 b

BarrenExtremely Harsh1020 light years awayFound 2016

Kepler-482 b, from the NASA Exoplanet Archive (found 2016). Measured: 6.17 Earth masses, 0.258 AU, a 4871 K K-type star. Composition inferred from a measured bulk density of 0.47x Earth's at this size, suggesting roughly 100% water/ice by mass, with an assumed 24-hour day — rotation cannot be measured for exoplanets.

Host star

Kepler-482

Type
K-type (Orange)
Temperature
4,871 K
Radius
0.72 ☉
Mass
0.75 ☉
Known planets
1 (this one)
Luminosity
0.289 ☉

Published by the NASA Exoplanet Archive. This world’s temperature and habitability score are computed from this star’s measured luminosity, not from a stand-in for its class.

Barren

Magnetic FieldExtreme Activity
Why is this a Barren?Your planet has an unusual composition that doesn't fit standard classifications, or lacks the elements needed for complex geological processes.
Barren worlds can form from uncommon element combinations or may be remnants of larger bodies that lost their atmospheres and volatile materials.
Classification Criteria:
Composition doesn't match standard planet typesMass: 6.2x EarthTemperature: 422K
Habitability ScoreExtremely Harsh
37
Contributing Factors
temperature15
Extremely hot - hostile to known life forms
atmosphere70
Nitrogen atmosphere provides protection but not breathable
water82
Abundant water - likely as steam
magnetic Field100
Magnetic field provides radiation protection
geology40
Extreme volcanic activity may be hazardous
Organic Chemistry80
Core organic elements (CHNO) present
rotation100
Optimal rotation period - balanced day/night cycle, moderate weather, and good heat distribution

Physical Properties

Mass
6.17x Earth (3.68e+25 kg)
Radius
1.83x Earth (11,685 km)
This planet: 1.83× Earth radiusEarth: 1× (baseline)
Surface Gravity
1.83x Earth (18.0 m/s²)
Surface Temperature
422 K (149 °C / 300 °F)
Rotation Period
24.0 hours/day
This planet: 24 h/dayEarth: 24 h/day

Orbital Environment

Star Type
K-type (Orange)
Distance from Star
0.26 AU (38.6 million km)
Orbital Period
57 days

Atmosphere

Thin CO₂ and nitrogen atmosphere

Elemental Composition

H - Hydrogen
55.0%
O - Oxygen
30.0%
Si - Silicon
6.0%

Surface Characteristics

Barren rocky surface with unusual elemental composition
A binary star system's orrery: two suns close together, a red dashed dead-zone boundary, and a debris trail left by a destroyed world

New: Binary Star Systems 🌀

A system can now orbit two suns. Add a companion star when you build one — close, medium, or wide — and the physics decides what survives: a shared center of mass carves out a dead zone where gravity from both stars tears a world apart, leaving it as debris, and every surviving planet's orbit goes elliptical, moving fastest at closest approach and slowest out at aphelion. Push the separation to wide and the dead zone opens tens of AU across, wide enough to gut a system that would have been stable around one star alone. Stand on a world that made it through and you'll watch two suns cross the sky together.

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