
Kepler-774 - System
Simulates Kepler-774, a Sun-like F-type star of 1.57 solar masses, and Kepler-774 b, a planet with 3.2 Earth radii, with an orbital period of 11.1 days.
Scenarios
Confirmed exoplanet systems from the NASA Exoplanet Archive, built from published orbital elements. Browse from single-planet hosts to compact multi-planet systems such as TRAPPIST-1, and watch how real architectures hold together under Newtonian gravity.

Simulates Kepler-774, a Sun-like F-type star of 1.57 solar masses, and Kepler-774 b, a planet with 3.2 Earth radii, with an orbital period of 11.1 days.

Simulates Kepler-775, a Sun-like G-type star of 0.92 solar masses, and Kepler-775 b, a planet with 1.2 Earth radii, with an orbital period of 23.4 hours.

Simulates Kepler-776, an orange K-type dwarf of 0.83 solar masses, and Kepler-776 b, a planet with 1.3 Earth radii, with an orbital period of 4.9 days.

Simulates Kepler-777, an orange K-type dwarf of 0.58 solar masses, and Kepler-777 b, a planet with 1.5 Earth radii, with an orbital period of 5.7 days.

Simulates Kepler-778, an orange K-type dwarf of 0.81 solar masses, and Kepler-778 b, a planet with 1.7 Earth radii, with an orbital period of 3.8 days.

Simulates Kepler-779, an orange K-type dwarf of 0.46 solar masses, and Kepler-779 b, a planet with 0.9 Earth radii, with an orbital period of 7.1 days.

Simulates Kepler-78 b, an Earth-sized lava world with both a measured mass and radius. It orbits so close that a year lasts only 8.5 hours. Its density is close to Earth's, so the planet is rock.

Simulates Kepler-780, a Sun-like G-type star of 1.01 solar masses, and Kepler-780 b, a planet with 0.9 Earth radii, with an orbital period of 16.3 hours.

Simulates Kepler-781, an orange K-type dwarf of 0.81 solar masses, and Kepler-781 b, a planet with 2.9 Earth radii, with an orbital period of 13.2 days.

Simulates Kepler-782, a Sun-like G-type star of 0.98 solar masses, and Kepler-782 b, a planet with 3.2 Earth radii, with an orbital period of 159 days.

Simulates Kepler-783, a Sun-like G-type star of 0.93 solar masses, and Kepler-783 b, a planet with 0.8 Earth radii, with an orbital period of 4.3 days.

Simulates Kepler-784, a Sun-like G-type star of 1.02 solar masses, and Kepler-784 c, a planet with 1.6 Earth radii, with an orbital period of 17.2 days, at 0.131 AU from its star, and an equilibrium temperature near 844.

Simulates Kepler-785, an orange K-type dwarf of 0.77 solar masses, and Kepler-785 b, a planet with 13.0 Earth radii, with an orbital period of 2.0 days.

Simulates Kepler-786, an orange K-type dwarf of 0.81 solar masses, and Kepler-786 b, a planet with 2.4 Earth radii, with an orbital period of 53.5 days.

Simulates Kepler-787, an orange K-type dwarf of 0.65 solar masses, and Kepler-787 b, a planet with 1.3 Earth radii, with an orbital period of 22.3 hours.

Simulates Kepler-788, a Sun-like F-type star of 1.16 solar masses, and Kepler-788 b, a planet with 2.5 Earth radii, with an orbital period of 8.4 days.

Simulates Kepler-789, a Sun-like G-type star of 1.01 solar masses, and Kepler-789 b, a planet with 2.1 Earth radii, with an orbital period of 8.6 days.

Simulates Kepler-79, four low-density planets near resonance. Like Kepler-51, they are puffier than their masses suggest, a clue to thick atmospheres.