Magnetic FieldModerate Activity
Why is this a Rocky Terrestrial?Your planet is dominated by silicate (36.4%) and iron (18.2%) content, forming a rocky terrestrial body.Rocky terrestrial planets are primarily composed of silicate rocks and metals. They're the most common type of small planet in the universe.
✓ Silicon: 36.4% + Iron: 18.2% + Magnesium: 0.0%✓ Mass: 1.6x Earth (terrestrial range)
Habitability ScoreUninhabitable
Contributing Factorswater0
No water - the recipe has no hydrogen and oxygen to form itgeology90
Active geology recycles nutrients and drives carbon cyclerotation10
Near tidally locked - one hemisphere perpetually scorched, other frozen, narrow habitable twilight zone onlyOrganic Chemistry20
Limited organic chemistry potentialatmosphere20
CO₂ atmosphere with moderate greenhouse effect (partially stripped by slow rotation)temperature70
Challenging but potentially habitable temperaturemagnetic Field100
Magnetic field provides radiation protection Physical Properties
Mass
1.60x Earth (9.56e+24 kg)Radius
1.17x Earth (7,452 km)Surface Gravity
1.17x Earth (11.5 m/s²)Surface Temperature
263 K (-10 °C / 14 °F)Rotation Period
24.0 hours/dayOrbital Environment
Star Type
B-type (Blue Giant)Distance from Star
118.70 AU (17.8 billion km)Orbital Period
409.0 yearsAtmosphere
Thin, dusty CO₂ atmosphere
Surface Characteristics
Rocky surface with impact craters, possible volcanic featuresMoons
Moon 1stable0.013% - 26.5 radii
Small and distant: a quiet, stable companion.
Tidal braking locked the planet to its moon: one face forever moonward.
Moon 2stable0.035% - 17.8 radii
Small and distant: a quiet, stable companion.
Moon 3stable0.018% - 7.4 radii
Small and distant: a quiet, stable companion.
Moon 4merged0.00079% - 18.6 radii
Merged with an adjacent moon: too close for both to hold a stable orbit.
Moon 5merged0.032% - 17.2 radii
Merged with an adjacent moon: too close for both to hold a stable orbit.
Moon 6stable0.0014% - 14.6 radii
Small and distant: a quiet, stable companion.
+4 chemistry: tidal pools cycle wet and dry - a boost for prebiotic chemistry