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Why the development of artificial gravity has become possible.jpg

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If we could develop technology to create spacecraft or space stations with artificial gravity, or terraform the Moon to have the same gravity as Earth, it would be a monumental achievement recorded until the end of humanity. Is there no way to develop this?
To do that, we must understand how Earth came to have gravity.
Before Earth was formed, our galaxy experienced a collision between two massive objects, and as the fragments spread out, a stable galaxy was created. At that time, our solar system likely had many more planets and asteroids.
Over time, as orbits met over hundreds or thousands of years, they collided, creating the stable solar system we have today.
And Earth, which was once a star, generated gravity by producing stable iron through nuclear fusion and fission, and by releasing heat through radiative cooling, which decreased atomic momentum and caused space to contract.
Using this principle, we can create small planets.
Imagine a sphere with a diameter of 10M. Let's assume the gravity conversion limit mass is 5%.
If you add water exceeding 5% of the sphere's mass and boil it, even if the steam converts back to liquid, gravity will not be generated.
To explain simply, if you add 25% water and boil it all into steam,
even if you convert that steam back into liquid, the steam filling the contracted space will prevent the force of spatial contraction from occurring, as the steam's expansion offsets the internal contraction force.
So, you install a pressure relief valve to induce the discharge of steam until it reaches the gravity conversion limit mass—let's say you discharge 80% of the steam.
After discharging 80%, the force of gravity that contracts the space increases by the ratio of the converted liquid steam multiplied by its mass.
Then, you insert a pipette to remove the water, install cooling facilities inside, and spray the steam in a vacuum space.
The moment the steam touches the cooling facility, it converts to liquid, reducing its volume by 1/1000 and shrinking the space; however, the steam deviation must be high and the density per unit area must be low.
If you spray the steam at too high a density, it will exceed the gravity conversion limit mass per unit area, and gravity will not increase.
Therefore, you convert the steam to liquid at an ultra-low density and remove that water with a pipette.
By repeating this process over time, the internal artificial gravity will eventually exceed Earth's gravity.
Then, matter inside will begin to float against the gravity.
Now, suppose we make this gravity sphere 1,000 times stronger than Earth's gravity.
If you open this in Earth's atmosphere, it will have no effect other than pulling in the atmospheric air.
Therefore, you must break the sphere in a vacuum layer where there is no atmosphere, or use a vacuum bomb on the ground to create a vacuum space and then break the sphere inside it, or build a very tall tower up to an altitude of 40km to create a vacuum space.
If you break this sphere within a space where a vacuum is continuously maintained, the gravity will increase.
Eventually, you can place this gravity sphere into the core of a spacecraft and open it to increase the ship's gravity.
The same applies to the Moon and Earth;
For the Moon or Earth, it would be better to take this sphere to a vacuum layer without an atmosphere and break it there.
For a spacecraft, you can create an independent vacuum layer and break it inside to strengthen the gravity.
If you put water inside this gravity capsule and head out into space where there is no gravity,
you will no longer be influenced by Earth's gravity, and that matter will only be influenced by the gravity created within that space, causing matter to form a planet at the center of gravity.
Then, if you melt that sphere with a laser, the sphere will be pulled inward by the gravitational field and rearrange itself by density, becoming the core of the sphere, and a small 10M diameter planet will be formed with layers of liquid and gas on top.
The boundary of this gravity is the boundary where the sphere once was, and if matter touches this boundary, it is pulled inward.
If you fill this inside with steam to eliminate the contraction force existing in the space, it becomes zero gravity.
Modern humans think that Earth pulls us.
Earth does not pull us.
As space contracts, the center of gravity is at the center of Earth's core.
What if Earth were to cross the boundary of the universe like a spacecraft?
Just like in a zero-gravity spacecraft, people on Earth would float up, water would float up, and everything would float as if in zero gravity.
Matter does not pull matter.
Gravity is the force of contraction maintained by the space created by a gravity source.
Suppose Earth moved away and collided with another planet and was destroyed.
Then the gravitational field where Earth was would still persist, and matter hitting this gravitational field in its orbit would be pulled back to the center of gravity to form matter again.
The principle of how gas giants like Saturn or Jupiter were formed is that there was originally a planet like Earth.
That planet contracted space and created immense gravity.
However, due to a collision with other matter, it was destroyed, losing 50% of its mass, leaving only the remaining gas clouds to form a gas giant.
There are planets where the gravity per unit area is greater than the total mass of the gas.
This means the gravity is greater than the force that would be created if all the total mass of this gas were converted into liquid.
This serves as clear evidence that the gravity source creating this planet's gravity is something other than gas.
To increase the force of gravity on Earth, you must create it in a vacuum layer where the gravity conversion limit mass is low.
In a place where Earth's gravity reaches but is a vacuum layer, you install a cooler and spray steam at low density; during the process of steam converting to liquid, the volume shrinks by 1/1000, and that force persists in the space, while the liquid falls to the ground.
Then, Earth's gravity will continuously increase by the ratio of the converted liquid steam multiplied by its mass; even just by boiling water and continuously spraying it on top, the gravity will increase.
However, no matter how much water you boil and convert to liquid in an atmospheric layer that exceeds the gravity conversion limit mass, the gravity will not increase.
There is no change other than the movement of matter.
Therefore, increasing the force of gravity and expanding its range is achieved not inside the planet, but at the edge of the planet's cosmic domain.
It is not true that Earth pulls us.
If Earth disappears, we will simply be pulled toward the center of where Earth used to be by gravity.
We can create spacecraft with artificial gravity, build space stations, and terraform the Moon to have the same gravity as Earth. For the Moon, you could turn surface water into steam and spray it at low density into the vacuum layer where the Moon's gravity reaches; as it touches the cooler and becomes liquid and flows down, you collect that water, boil it again, and spray it as steam into the vacuum layer.
One factory operates, then two, then 100, then 1,000; this energy can be supplied by nuclear power or electricity generated from solar power plants, and you can even boil water using heat collected from electromagnetic waves emitted by solar power plants via radiative cooling.
Taking it one step further, you could produce 100 or 1,000 gravity spheres per hour and build facilities to increase gravity by opening those gravity spheres in the Moon's vacuum layer.
If the first generation is the method of boiling water and cooling it in a vacuum layer, the second generation involves increasing the gravity of the vacuum sphere by 1,000 or 10,000 times and then taking it directly to the effective target—the vacuum layer without an atmosphere—to open it.

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