Why is this a Exotic Terrestrial?Your planet builds its crust from exotic minerals (27.6% calcium/titanium/aluminum-family rock formers) instead of the silicate-iron recipe every standard rocky world uses.
Exotic terrestrials are temperate solid worlds whose geology skipped the silicate playbook - carbonate plains, titanium-gray mesas, alkali flats. They can hold air, water ingredients, and real habitability, but with no silicate continents or iron core they are their own class, not earth-likes.
Classification Criteria:
✓ Exotic rock formers: 27.6% (>=12% Ca/Ti/Al/K/Ni/U)✓ Standard rock: 2.0% (<15% - silicate rules never claimed it)✓ Temperature: 280K (240-380K temperate band)✓ Air + water ingredients: 26.5% O+H (>=15%) with an atmosphere
Habitability ScoreMarginal
52
Contributing Factors
water90
Good water content
geology90
Active geology recycles nutrients and drives carbon cycle
rotation100
Optimal rotation period - balanced day/night cycle, moderate weather, and good heat distribution
Organic Chemistry50
Carbon and hydrogen present - organic chemistry possible — but the ground itself is radioactive, and no magnetic field shields a world from its own crust
atmosphere50
CO₂ atmosphere with moderate greenhouse effect
temperature100
Optimal temperature range for liquid water and life
magnetic Field100
Magnetic field provides radiation protection
Physical Properties
Mass
1.00x Earth (5.97e+24 kg)
Radius
1.00x Earth (6,371 km)
Surface Gravity
1.00x Earth (9.8 m/s²)
Surface Temperature
280 K (7 °C / 44 °F)
Rotation Period
24.0 hours/day
Orbital Environment
Star Type
F-type (White)
Distance from Star
2.42 AU (362 million km)
Orbital Period
3.30 years
Atmosphere
Thin CO₂ atmosphere
Elemental Composition
Na - Sodium
40.8%
K - Potassium
21.4%
O - Oxygen
14.3%
Surface Characteristics
Pale mineral plains — carbonate flats, chalk mesas, and crusts no silicate world can build
Inside the Roche limit (2.80 planet radii): torn apart into a ring system.
Habitability
✓ Conditions suitable for life detectedThis planet exhibits the necessary conditions to support biological processes, including stable temperatures, liquid water, and protective magnetic fields.