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Chapter 467: Chapter 468 Proton Lattice

Above the planet, a creature that looks like a sphere crawls on the ground. They are lined up in a long line and jumps down from the pool of a lake in an orderly manner.

These are the teams that produce tal hydrogen. Their spherical tal bone structure is filled with liquid hydrogen and moves with six tamps. The volu is comparable to that of a truck. The vast majority of the volu is solid tal hydrogen, which really belongs to the organism itself.

Although organisms have brains, they are not very developed, so they are just animals that can simply listen to the collector and have a life field. In the final analysis, their task does not require too much intelligence. The aning of existence is to carry a ball of liquid hydrogen and jump into the lake to embrace death.

As the depth decreases, the water pressure becos higher and higher. The organism, together with the external water body, adjusts the internal and external pressure to the sa horizontal line to avoid cell death. However, the barren brain has been necrotic because of lack of nutrients, so this is a living corpse. The cells are still alive, but the brain is no longer there.

Cells spontaneously raise impurities in the water, and the result is that it will eventually harden and necrotize their own structure, but this is a very slow process.

As the depth continues to decline and reaches a very deep place, the spherical volu begins to change. Because the pressure is too large, it has already affected the level of the atomic structure.

The increase in pressure causes the distance between the two hydrogen atoms to get closer, and what is the result of this closer?

One electron will be ejected, and two protons share one electron. The reason is that the lowest energy level of electron orbit cannot accommodate the next two electrons. The allotrope structure of hydrogen molecules was born under such pressure.

Of course, as a container for encapsulating liquid hydrogen, the tal bones hired by the outside will also be compressed in this environnt. However, the atomic sequence of the elents that make up the tal skeleton is relatively high, but one level of electrons are squeezed out, and other levels of extranuclear electrons are supported.

However, it is foreseeable that after the water pressure disappears, the extranuclear electrons will be replenished, and then the volu of the container skeleton will return to the size of atmospheric pressure, and the hydrogen core compressed into liquid tal hydrogen will also recapture the extranuclear electrons and restore it to the original liquid hydrogen.

Of course, collectors will not let this happen, otherwise wouldn't it be aningless to sink these liquid hydrogens to the bottom of the water?

After a period of ti, the tal skeleton cos into contact with the bottom of the water. At this ti, it is one. The force of the water pressure is omnidirectional and uniform, so it still maintains the appearance structure of the sphere, but the volu is much smaller than before.

There are no cells on the sphere. The original cells have been completely hardened into tal bones, and then the compressed tal hydrogen is used as the material to reconstruct a tal bone container that can be stable at room temperature and pressure.

Then, the tal ball gradually fell into the soft mud at the bottom of the water because of its density, but this 'soft mud' is not dead. It is alive. It is a underwater structure composed of many calcareous bone cells. They will follow the instructions of the life field to fill this tal skeleton container full of liquid tal hydrogen. Push it to the rhizo, and then push it through the muscle to send the container to the surface.

This is the whole process of liquid tal hydrogen formation. Solid tal hydrogen is also a similar manufacturing principle, but the depth is deeper, the water pressure is larger and more horrible, so it is more difficult.

The liquid tal hydrogen produced was quickly arranged by the collectors, which is the material they use to make the gamma protective layer.

Liquid tal hydrogen is sent to the hive for processing.

Liquid tallic hydrogen, as its na suggests, is liquid, but in this state it is still a molecular structure, but this structure is more special, that two proton nuclei share an extranuclear electron.

The structure of the molecular hierarchy, It belongs to the category where the collectors have the ability to process. For this reason, the tal bones will be flattened, and the liquid tal hydrogen will be flattened together.

Each molecular structure of liquid tal hydrogen will be neatly arranged, because the movable gap is just the diater of the liquid hydrogen molecule, so the molecule can only move in the two-dinsional direction.

At this stage, further processing can be carried out, but this processing step needs to be carried out at the bottom of the water, and it is deeper than the previous processing of liquid tal hydrogen.

Because only in this way can enough water pressure be ford to form solid tal hydrogen.

The processed liquid tal hydrogen is not thrown into the deep well, but is sent to the ground by the rhizo. The direction of the water pressure is omnidirectional, which is not conducive to processing liquid tal hydrogen into a flat and extrely dense solid tal hydrogen. It will only be compressed into a spherical structure when the solid tal hydrogen is ford. This is not The results that the collectors want.

Therefore, there is only one solution, that is, to send it directly to the bottom of the water and bear pressure at the bottom of the bottom of the water. Because it is the bottom of the water, the direction of the water pressure tends to be one-way. can get a flat solid tal hydrogen structure in this way.

Such an idea is simple to say, but it is very difficult to do in practice, because the water pressure is very large, which leads to the amazing density of the water body, but ordinary liquid water is like a colloid, and the spacing between water molecules is very small.

In order to solve this problem, collectors use antimatter to form strong gamma rays to irradiate the water body, destroy the molecular structure, create a large number of charged ionons, and then use a strong electric field to repel it, so that the water pressure of part of the bottom of the water can be reduced to a certain extent.

While the water pressure is reduced, the processed flat liquid tal hydrogen is transferred to the bottom of the water together with the tal bone container. After placing it, the strong electric field will disappear and the water pressure will return to its original state. At this ti, the liquid tal hydrogen will squeeze out the remaining extranuclear electron under strong pressure to form a proton. That is, the crystal structure composed of hydrogen nuclei.

During the processing process, in order not to curl, the tal bone container encapsulated with liquid tal hydrogen will be adsorbed by a strong electric field and firmly attached to the bottom of the water, while the other side is seized by the repulsion force of a strong electric field to ensure that the flat structure of the tal skeleton does not make it curl.

Therefore, liquid tal hydrogen can only be forced to maintain flattening and further compression. Of course, the encapsulated tal bone container will also be compressed together.

Similar to the liquid tal hydrogen bottom, the tal skeleton is replaced with another material container, and the proton lattice is replaced and re-encapsulated to stabilize the internal pressure.

The strong electric field that can offset part of the water pressure starts again, and then the proton lattice is taken out after the pressure slows down and transported back to the surface by the rhizo.

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