Kepler-279 b
Brown DwarfUninhabitable3390 light years awayFound 2014
Kepler-279 b, from the NASA Exoplanet Archive (found 2014). Measured: 4180 Earth masses, 0.112 AU, a 6363 K F-type star. Composition inferred from a mass of 4180 Earths, which is giant territory whatever its 88.12x density suggests, with an assumed 24-hour day — rotation cannot be measured for exoplanets.
Kepler-279
- Type
- F-type (White)
- Temperature
- 6,363 K
- Radius
- 1.75 ☉
- Mass
- 1.2 ☉
- Known planets
- 4, including this one
- Luminosity
- 3.30 ☉
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.
Brown Dwarf
Magnetic FieldNone Activity
Why is this a Brown Dwarf?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: 4180.0x EarthTemperature: 1122K
Habitability ScoreUninhabitable
Contributing Factors
temperature0
Inferno world - temperatures exceed all possibility of life
atmosphere30
Hydrogen-rich atmosphere typical of gas giants
water15
No solid surface — any water is locked in a supercritical mantle and hot ice, not oceans
magnetic Field100
Magnetic field provides radiation protection
geology30
Geologically dead - no nutrient recycling
Organic Chemistry80
Core organic elements (CHNO) present
rotation100
Optimal rotation period - balanced day/night cycle, moderate weather, and good heat distribution
Physical Properties
Mass
4180.00x Earth (2.50e+28 kg)Radius
16.11x Earth (102,628 km)Surface Gravity
16.11x Earth (158.0 m/s²)Surface Temperature
1,122 K (849 °C / 1,560 °F)Rotation Period
24.0 hours/dayOrbital Environment
Star Type
F-type (White)Distance from Star
0.11 AU (16.8 million km)Orbital Period
12 daysTime Dilation
Clocks run 5.4 seconds per year slower than deep space — about 7 minutes over a lifetimeAtmosphere
Hydrogen and helium dominated by methane absorption, with water clouds below
Elemental Composition
H - Hydrogen
53.8%
He - Helium
32.3%
O - Oxygen
5.4%



