My planets name will be, Planet Hogan, named after the greatest wrestler of all time. It will be fit(p) in a galaxy, far, far away. It will be a tellurian planet, this decision was reached on the possibility of sensation mean solar day supporting life on the planet. The following ar virtually calculations that will describe the planet in a slender more than detail: à         major Mass - - 1.2 à         star(predicate) Luminosity- - 1.2^(3.5)= 1.893 1.893*(4.5*10^26) à         Stellar Constant- - 1.893*(4.5*10^26) = 239.994 4P(1.5*10^11)^2 à         Stellar life story - - 1.2/8.5185 = 1.4 billion years à         mediocre standoffishness - - 1.25 AU à         Average Temperature- - 1400(1-.34) = 225 degrees Kelvin 4(5.67*10^-8)(1.25^2) The reason why I hold to make a planet with these specifications is because I want to prove if life send word be back up on a planet that is a bitty further away from its solarise than the Earth, but with a star that put downs come out a little more luminosity than the Sun. Some scenarios that I would like to make would be an atmosp here exchangeablely composed to the one here on Earth, a composition that would allow for more materials to save formed on the planet, and the capturing of a moon or mayhap 2.
I think Ill run into just about difficulties with the atmosphere creation, only in that I would like it to be similar to Earths in some ways, barely be distinguished in its own way. A jibe of questions I would like to pose are: 1. Â Â Â Â Â Â Â Â Why cant I get ! my stellar constant to image decent? 2. Â Â Â Â Â Â Â Â I realize that the avg. temperature is overthrow than Earths, what scenarios could I progress to internally heat the planet (core scenarios)? 3. Â Â Â Â Â Â Â Â What if I put into conception a second sun, with a luminosity about lower than the suns? If you want to get a full essay, holy order it on our website: OrderCustomPaper.com
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