Gas Giant Magnetic Field Extreme Activity
Why is this a Gas Giant? Your planet has 94.7% hydrogen and helium, combined with a mass of 1889.0x Earth, which exceeds the gas giant threshold. Gas giants form when massive cores capture enormous atmospheres of light gases. They typically form beyond the 'frost line' where volatiles can condense.
✓ Hydrogen + Helium: 94.7% (>60% required) ✓ Mass: 1889.0x Earth (>10x required)
Habitability Score Uninhabitable
Contributing Factors water 15
No solid surface — any water is locked in a supercritical mantle and hot ice, not oceans geology 40
Extreme volcanic activity may be hazardous rotation 65
Slow rotation - significant day/night temperature variations, but life can adapt Organic Chemistry 54
Carbon and hydrogen present - organic chemistry possible (tidal pools cycle wet and dry - a boost for prebiotic chemistry) atmosphere 30
Hydrogen-rich atmosphere typical of gas giants temperature 0
Near absolute zero - all molecular activity ceases, impossible for life magnetic Field 100
Magnetic field provides radiation protection Physical Properties Mass
1889.00x Earth (1.13e+28 kg) Radius
12.36x Earth (78,756 km) This planet: 12.36× Earth radius Earth: 1× (baseline)
Surface Gravity
12.36x Earth (121.3 m/s²) Surface Temperature
25 K (-248 °C / -415 °F) Rotation Period
48.0 hours/day (slower than Earth) This planet: 48 h/day Earth: 24 h/day Orbital Environment Distance from Star
304.80 AU (45.6 billion km) Orbital Period
4,667 years Atmosphere Hydrogen and helium dominated with trace methane and ammonia
Surface Characteristics No solid surface - thick gaseous envelope with possible rocky core deep within Moons
Moon 1 rings 1.6% - 1.5 radii
Inside the Roche limit (1.79 planet radii): torn apart into a ring system.
Moon 2 merged 0.011% - 67.1 radii
Merged with an adjacent moon: too close for both to hold a stable orbit.
Moon 3 receding 1.1% - 60.4 radii
Outside the synchronous orbit: slowly receding, like Luna (~cm per year).
+4 chemistry: tidal pools cycle wet and dry - a boost for prebiotic chemistry