Chapter 1,710 Amusement Park Follow-up 9

Style: Heros Author: KanoyuWords: 2080Update Time: 24/01/19 01:41:41
The move that Ye Feng used to deal with Futa Guya's family was to use the "Humanity Technique - Brown" to compress the spherical space hundreds of thousands of miles in radius into a point. Ye Feng called this skill "Reunification". This move of "Return to One" is very terrifying, and at the same time it is used just right.

Because after Ye Feng killed Futagua, Futagua's family members fled in all directions, and Ye Feng could not leave them alive. These dependents have tasted human blood and remember the taste of wisdom in human blood. Letting them go will make the corners of the world full of their lurking figures, so Ye Feng cannot let them go.

Those dependents are wise, and they think that if they run apart, a few will escape, and then through mysterious rituals, Futagua can come again. But Ye Feng's "Return to One" move dashed all their hopes, and no one escaped in all directions.

But this time Ye Feng did not use "Return to One" to deal with Yog-Sothoth's army. It was not that Ye Feng didn't want to use it, but that it had no effect. Because even the miscellaneous fish in the army can compare with Futagua. "Reunification" can kill those dependents, but it can't stop these monsters that are comparable to Futagua. After all, the move "Return to One" focuses on range, sacrificing power and intensity.

So this time Ye Feng changed his approach.

When Ye Feng understood the three supreme principles before, he combined the principles of life and death with the principles of cause and effect and invented the line of cause and effect. As long as the causal line of life and death is cut off, you will die from the level of rules, and that is true death. But this trick can only be used on enemies whose strength is lower than yours. It is useless in battles of the same level or even higher levels.

This skill is the "unparalleled mowing" skill exclusive to flying knives, but it cannot cut special elite monsters and bosses. But it is a magical skill when dealing with mobs and ordinary elite monsters.

But now Ye Feng is strong enough to use special "flying knives" to cut down the monsters in the army who are as powerful as Futagua. In addition to the fact that Ye Feng's level is higher than that of the enemy's monsters, it is also due to this special huge transparent flying knife.

The most obvious and crucial feature is that the hardness of the flying knife can penetrate the monster's body, which is comparable to the treasure. In other words, the hardness of the flying knife is higher than that of the treasure. After all, flying knives cannot penetrate the monster's body. Even if the line of cause and effect of life and death is seen through, it will not be able to cut through it.

So why do flying knives have such hardness?

We know that cutting can split an object into two. This is a manifestation at the macro level, so what does cutting mean at the micro level?

First of all, as we all know, most of the substances we see every day are made of molecules. For example, water is made up of individual water molecules. The reason why individual water molecules can aggregate together to form water , relying on an intermolecular interaction.

The so-called cutting is actually a squeezing force at the microscopic level. When a substance is squeezed by an external force, it will deform. This deformation is essentially a break in the interaction between molecules.

When the cutting "blade" is applied to an object, a large tensile stress will be generated at the force application part. When the tensile stress reaches a certain value, the force between molecules will break. As a result, the molecules will move to both sides of the blade, and the object will be divided into two halves on a macroscopic level.

Of course, some objects do not have a molecular structure. For example, iron is composed of iron atoms. When cutting these substances, the binding force between atoms is actually broken, such as metallic bonds, covalent bonds or ionic bonds. of fracture.

It can be seen that cutting any substance only destroys the force between molecules or atoms, but the atoms themselves are not destroyed.

Therefore, if the force between molecules and atoms is strong and difficult to be cut off, then the macroscopic manifestation is high hardness. The most direct and effective way to increase the force between molecules and atoms is to shorten the distance between atoms or molecules. The macroscopic manifestation is to increase the density.

Examples are diamond and graphite. Although diamond and graphite are made of the same element, the carbon molecules in diamond are tightly arranged and have a strong structure, so it is highly hard. In turn, graphite is arranged in a quadrilateral shape, so it is far less hard. Diamond.

Secondly, we all know that an atom is composed of a nucleus and electrons outside the nucleus, and the nucleus is composed of protons and neutrons. The nucleus must have protons but not necessarily neutrons. For example, a hydrogen atom has only one proton and one electron outside the nucleus.

Atoms are basically empty. More than 99% of the mass of an atom is concentrated in the nucleus, and the volume of the nucleus only accounts for one hundred billionth of an atom.

The trajectory of electrons outside the nucleus is not detectable with current human technology. Even if it can be detected, it is only the probability of appearing in a certain location. Theoretically speaking, it is possible for electrons to exist in the space around the nucleus, but the probability is different. I call such a volume "puffy". For the macroscopic stability of the material structure, space must be left between atoms for this "puffy" volume.

Theoretically speaking, as long as humans can accurately grasp the trajectory of electrons, there will be a way to close the distance between atomic nuclei while avoiding the collision of electrons outside the atom, thus achieving a substantial increase in the density of matter. The theoretical limit density is the nucleus. The density of neutron stars.

So how heavy is a neutron star? For example, a spoonful of neutron stars weighs as much as a Himalayan mountain. You can imagine how dense that would be. And the gravitational result of that density is that even light cannot escape.

Ye Feng has mastered the laws of time and space very early, and now his mastery of the laws of time and space has reached the same microscopic level as the law of thunder.

In terms of time, Ye Feng can determine the location of specific electrons that humans cannot detect. Because he can understand the past of electrons, master the present of electrons, and can predict the future of electrons, Ye Feng has achieved almost zero contact between nuclei and atoms between substances.

In terms of space, Ye Feng used space folding to achieve further superposition between atomic nuclei on the basis of "zero distance", making the density higher than that of neutron stars.

To put it simply, from a macro perspective, the density of those flying knives is already thousands of times greater than that of a neutron star, and this is the microscopic manifestation of Ye Feng's "Humanity Technique - Brown" and the essence of its microscopic application.

Therefore, it is very easy for a flying knife to penetrate the body of a monster. Coupled with the use of the line of life and death, the conditions for killing the monster instantly are achieved.

In other words, the seemingly ordinary flying knife is actually the product of the combination of Ye Feng's three supreme principles.

So, how can such a magical skill not kill those monsters in seconds?