
CoRoT-19 - System
Simulates CoRoT-19, a Sun-like F-type star of 1.21 solar masses, and CoRoT-19 b, a 1.11-Jupiter-mass companion, with an orbital period of 3.9 days, at 0.052 AU from its star, and an equilibrium temperature near 2,000 K.
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 CoRoT-19, a Sun-like F-type star of 1.21 solar masses, and CoRoT-19 b, a 1.11-Jupiter-mass companion, with an orbital period of 3.9 days, at 0.052 AU from its star, and an equilibrium temperature near 2,000 K.

Simulates CoRoT-2, a Sun-like G-type star of 0.96 solar masses, and CoRoT-2 b, a 3.47-Jupiter-mass companion, with an orbital period of 1.7 days, at 0.028 AU from its star.

Simulates CoRoT-20, a Sun-like G-type star of 1.14 solar masses, and CoRoT-20 b, a 4.30-Jupiter-mass companion, with an orbital period of 9.2 days, at 0.090 AU from its star, on an eccentric orbit (e ≈ 0.59).

Simulates CoRoT-21, a Sun-like F-type star of 1.29 solar masses, and CoRoT-21 b, a 2.26-Jupiter-mass companion, with an orbital period of 2.7 days, at 0.042 AU from its star.

Simulates CoRoT-22, a Sun-like G-type star of 1.10 solar masses, and CoRoT-22 b, a 12.2-Earth-mass planet, with an orbital period of 9.8 days, at 0.092 AU from its star, and an equilibrium temperature near 885 K.

Simulates CoRoT-23, a Sun-like G-type star of 1.14 solar masses, and CoRoT-23 b, a 2.80-Jupiter-mass companion, with an orbital period of 3.6 days, at 0.048 AU from its star, and an equilibrium temperature near 1,660 K.

Simulates CoRoT-24, an orange K-type dwarf of 0.91 solar masses, and CoRoT-24 b, a 5.7-Earth-mass planet, with an orbital period of 5.1 days, at 0.056 AU from its star, and an equilibrium temperature near 1,070 K.

Simulates CoRoT-25, a Sun-like F-type star of 1.09 solar masses, and CoRoT-25 b, a 0.27-Jupiter-mass companion, with an orbital period of 4.9 days, at 0.058 AU from its star, and an equilibrium temperature near 1,330 K.

Simulates CoRoT-26, a Sun-like G-type star of 1.09 solar masses, and CoRoT-26 b, a 0.52-Jupiter-mass companion, with an orbital period of 4.2 days, at 0.053 AU from its star, and an equilibrium temperature near 1,600 K.

Simulates CoRoT-27, a Sun-like G-type star of 1.05 solar masses, and CoRoT-27 b, a 10.4-Jupiter-mass companion, with an orbital period of 3.6 days, at 0.048 AU from its star, and an equilibrium temperature near 1,500 K.

Simulates CoRoT-28, a Sun-like G-type star of 1.01 solar masses, and CoRoT-28 b, a 0.48-Jupiter-mass companion, with an orbital period of 5.2 days, at 0.060 AU from its star.

Simulates CoRoT-29, an orange K-type dwarf of 0.97 solar masses, and CoRoT-29 b, a 0.85-Jupiter-mass companion, with an orbital period of 2.9 days, at 0.039 AU from its star, on an eccentric orbit (e ≈ 0.08).

Simulates CoRoT-3, a Sun-like F-type star of 1.37 solar masses, and CoRoT-3 b, a 21.7-Jupiter-mass companion, with an orbital period of 4.3 days.

Simulates CoRoT-30, a Sun-like G-type star of 0.98 solar masses, and CoRoT-30 b, a 2.90-Jupiter-mass companion, with an orbital period of 9.1 days, at 0.084 AU from its star.

Simulates CoRoT-31, a Sun-like G-type star of 1.25 solar masses, and CoRoT-31 b, a 0.84-Jupiter-mass companion, with an orbital period of 4.6 days, at 0.059 AU from its star.

Simulates CoRoT-32, a Sun-like G-type star of 1.08 solar masses, and CoRoT-32 b, a 0.15-Jupiter-mass companion, with an orbital period of 6.7 days, at 0.071 AU from its star, and an equilibrium temperature near 938 K.

Simulates CoRoT-35, a Sun-like F-type star of 1.01 solar masses, and CoRoT-35 b, a 1.10-Jupiter-mass companion, with an orbital period of 3.2 days, at 0.043 AU from its star, and an equilibrium temperature near 1,747 K.

Simulates CoRoT-36, a Sun-like F-type star of 1.32 solar masses, and CoRoT-36 b, a 0.68-Jupiter-mass companion, with an orbital period of 5.6 days, at 0.066 AU from its star, and an equilibrium temperature near 1,567 K.