Planet is anywhere from 45 to 78 lunar distances from the red dwarf, distances presumably being measured from center to center, rather than surface to surface. I do get stable solutions though, if the moon is very small-about the size of Dione-or rather, about the MASS of Dione, and orbiting at a distance of about 26000 to 45000 AU. Can't seem to get any respectably sized moon to orbit, though-Hill-sphere too small-the red dwarf primary yanks the moon away from Kesh, and the moon ends up in its own orbit. Atmospheric pressure is a little higher at 1.06. Magnetic field on, and mass is somewhere about 70 to 90% of earth's. Generally, I am able to get a "probability of life" of somewhere between 0.4 and 0.6, and that's not half bad, considering that we're talking about a remarkably arid world orbiting an M0.5 red dwarf primary that shares its orbit with an F8-type star that is in the process of evolving into a red giant! I am also using a modified "Mars" to model the desert world of Kesh from "Kesh: The Sands of Destiny". Let’s find out Mars: The red planet (Photo Credit : Vadim Sadovski/Shutterstock) What Is Terraforming To put it simply, terraforming a planet or other celestial entity, means manipulating its atmosphere and other environmental characteristics so that the climate of that planet becomes habitable for lifeforms. All very good points worth further research. Universe Sandbox 2 is a sandbox game where players can construct and mold solar systems, galaxy, and even other celestial systems.
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