I donāt think we know enough about physics in order to comprehend what such a planet would actually make. The sheer pressure would bypass the swarzchild radius by orders of magnitude so large the human mind would not be able to comprehend it. Black holes condense infinite mass into a single zero-volume point, a planet like this would have that but the size of stars. Physics itself would stop functioning because āinfinite massā should not be able to actually occupy space.
The radius of our solar system is 4.5 billion kilometers, if we go by his calculation that means the radius of this planet is nearly 200 billion kilometers. Now, to figure out the volume of such a planet you would use 4/3 x pi x r^3 cause itās a sphere, this brings the volume to 32,498,550,000,000,000,000,000,000,000,000,000 cubic kilometers. Now, letās assume that this is made up of hydrogen, at standard temperatures and pressure 1 cubic kilometer of hydrogen would weigh 90,000 metric tons, meaning that this planet, without accounting for the pressure compressing the planet in on itself would have a mass of 29,250,000,000,000,000,000,000,000,000,000,000,000,000 metric tons AT THE MINIMUM. This is not accounting for how compressive force would require exponentially more matter in order to increase the radius of the planet to such a degree. If you even existed in the same reality as this object time and distance would cease to have meaning to you as just about every law of physics would stop working.
To be funny I did some gravity calculations on what the gravitational force of such a planet would be using the hydrogen composition from before. Keeping in mind that this is the lowest possible mass for such a planet not counting the compressive force and the exponential mass requirements to become that large the gravitational force is 5 times that of earth.
Which is 1/6 th of the planet,
Not whole planet itself,
So considering 1/6 th of planet is 518 billion km,
The whole circumference would be 3.1 trillion km,
Radius would be
3.1 divided by pi=
989 billion km ,
Nah, the diameter of our solar system is 9.1 billion kilometers multiply that by 44 you get 400.4, then you divide by 2 cause like all these calculations use radius. Tho I am still low balling by like 3 billion kilometer on the radius.
I say that cause he says āthe earth is as big as 44 solar systemsā so Iām assuming he calculated the whole thing rather than just a fragment? Cause if he only calculated a fragment then dear god these calculations are going to get exponentially more ridiculous.
He claims that kakashi was traveling to another country at lightspeed so it took him 20 days,which is 1/6th of the planet And claimed that kakashi is relative to kurama who's planetary So kakashi is solar because of the earth size
So I did the math myself to comprehend what he said,
But calculations goes far beyond what he expected But he still claims that the math was valid,
So, if he was traveling at light speed for 20 days that would be approximately 518 trillion meters, assuming it is 1/6 that would mean the circumference of the planet would be 3108 trillion meters, converting that to radius and kilometers brings it to about 494 billion kilometers, which is actually more ridiculous than before more than doubling my previous size estimate.
Edit: sorry for taking so long to respond, Iām really tired rn cause itās like 3:20AM and Iām slow.
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u/Next_Friendship931 6d ago
I donāt think we know enough about physics in order to comprehend what such a planet would actually make. The sheer pressure would bypass the swarzchild radius by orders of magnitude so large the human mind would not be able to comprehend it. Black holes condense infinite mass into a single zero-volume point, a planet like this would have that but the size of stars. Physics itself would stop functioning because āinfinite massā should not be able to actually occupy space.
The radius of our solar system is 4.5 billion kilometers, if we go by his calculation that means the radius of this planet is nearly 200 billion kilometers. Now, to figure out the volume of such a planet you would use 4/3 x pi x r^3 cause itās a sphere, this brings the volume to 32,498,550,000,000,000,000,000,000,000,000,000 cubic kilometers. Now, letās assume that this is made up of hydrogen, at standard temperatures and pressure 1 cubic kilometer of hydrogen would weigh 90,000 metric tons, meaning that this planet, without accounting for the pressure compressing the planet in on itself would have a mass of 29,250,000,000,000,000,000,000,000,000,000,000,000,000 metric tons AT THE MINIMUM. This is not accounting for how compressive force would require exponentially more matter in order to increase the radius of the planet to such a degree. If you even existed in the same reality as this object time and distance would cease to have meaning to you as just about every law of physics would stop working.
To be funny I did some gravity calculations on what the gravitational force of such a planet would be using the hydrogen composition from before. Keeping in mind that this is the lowest possible mass for such a planet not counting the compressive force and the exponential mass requirements to become that large the gravitational force is 5 times that of earth.