Chapter 1703 Atomic Breath
When cooling is required, the cooling fins of the MK space weapon will quickly expand to increase the contact area with the space environment and accelerate heat dissipation.

Connors stood there quietly, his huge body like a hill, every muscle containing terrifying power.

At this moment, he lowered his head slightly, and his huge mouth slowly closed, making a dull sound, as if a mechanical device was slowly closing.

The light on Connors' body surface, which was originally faintly glowing due to the full energy, gradually dimmed. This was the process of him cooling down.

His body was like a sophisticated and complex energy machine. The energy consumed by the shot just now that hit the target in outer space orbit from the ground was beyond imagination.

You have to know that there is a huge distance and complex environmental factors between the Earth's atmosphere and outer space orbit. There are countless difficulties to overcome in order to break through the layers of barriers in the atmosphere and accurately transfer energy to the target in outer space orbit.

In the atmosphere, the density of air changes dramatically with increasing altitude, from dense at the ground to gradually becoming thin.

As the energy beam passes through the atmosphere, it collides and interacts violently with air molecules.

Air molecules will be ionized and form plasma under the impact of high-speed energy beam.

These plasmas are like invisible barriers that absorb, scatter and reflect energy beams, causing the energy beams to continuously attenuate during propagation.

Moreover, there are various meteorological phenomena in the atmosphere, such as air currents, clouds, etc., which will also affect the propagation trajectory of the energy beam, causing the energy beam to deviate from the predetermined target.

Although Connors possesses amazing abilities, he is ultimately just a living organism.

Although the atomic reactor in his body is a miraculous existence, it is essentially just a biological atomic reactor organ for nuclear fission reaction.

Although nuclear fission reactions can release huge amounts of energy, they are also limited by many factors.

Nuclear fission reactions require specific nuclear fuels, such as uranium-235 or plutonium-239. These nuclear fuels will release neutrons during the fission process, which will trigger the fission of other atomic nuclei, forming a chain reaction, thereby releasing a large amount of energy.

However, the amount of nuclear fuel is limited, and the efficiency of nuclear fission reactions is not 100%.

During the reaction process, part of the energy will be dissipated into the surrounding environment in the form of heat energy and cannot be effectively utilized.

For Connors, the previous shot almost exhausted the energy that the atomic reactor in his body could provide.

Unless he could consume more radioactive material, that shot would be the limit of his current energy.

Radioactive materials are important raw materials for nuclear fission reactions. They contain a large number of unstable atomic nuclei and can provide the fuel needed for nuclear reactors to continue nuclear fission reactions.

Different radioactive materials have different half-lives and fission characteristics. Some radioactive materials have larger fission cross-sections and are more likely to undergo fission reactions, thereby releasing more energy.

However, radioactive materials themselves are also extremely dangerous. They release various rays, such as alpha rays, beta rays and gamma rays, which can cause serious damage to organisms and may even cause diseases such as gene mutations and cancer.

Just as Connors was trying to recover his energy, his opponent Norman didn't give him a chance to breathe.

Norman suddenly opened his huge mouth, and a strange light flashed deep in his throat. Then, a powerful energy quickly gathered in his body.

"boom!"

With a deafening roar, Norman exhaled atomic breath. Unlike Connors's blue-white atomic breath, Norman's atomic breath was tinged with a green light.

This faint green light is particularly unique in terms of spectral effects, making people wonder what exactly happened in the spectral effects that resulted in the appearance of this color of light.

From the perspective of spectroscopy, different colors of light correspond to different wavelengths and frequencies.

When an atom absorbs or releases energy, electrons jump between different energy levels.

When electrons jump from a higher energy level to a lower energy level, they release photons of a specific wavelength, which combine to form the color of light we see.

Norman's atomic breath appears dark green, most likely because the energy released by the atomic nuclei in his body during a special nuclear reaction causes the electrons to jump to a specific energy level, thus producing this unique color of light.

Moreover, this dark green atomic breath may contain other special properties.

For example, it may have stronger penetrating power, able to penetrate the surface of an object more easily and cause damage to the interior of the object; or it may have some special radiation properties that can cause more serious damage to the cells and tissues of organisms.

Connors was prepared for Norman's sudden attack.

He quickly deployed the "asymmetric transparent shield" under the epidermis.

This shield is a special defense mechanism of Connors' body. It is made of a special biological material with unique physical and chemical properties.

From a physical point of view, the atomic structure of this biomaterial is very special. Its electron cloud is unevenly distributed, forming an asymmetric charge distribution.

When Norman's atomic breath impacts the shield, the electrons on the shield's surface interact with the photons in the atomic breath.

Due to the asymmetry of the electron cloud, some photons will be reflected back, while other photons will be refracted at a specific angle, thereby reducing the energy transfer of atomic breath to the inside of the protective shield.

From a chemical perspective, the biomaterial also has the ability to self-repair and absorb energy.

When the protective shield is hit by the atomic breath, the chemical bonds in the material will break and recombine, but this breaking and recombination is within a controllable range.

The material will quickly absorb the energy from the atomic breath and convert it into its own chemical energy, which is used to repair damaged chemical bonds and maintain the structural stability of the shield.

However, Norman's atomic breath was so powerful that, although Connors' "asymmetric penetrating shield" played a certain role, it also caused his epidermis to become plasma.

Plasma is a state in which electrons in atoms are stripped away under high temperature or high energy, forming a plasma state composed of free electrons and ions.

When the energy of the atomic breath is high enough, the atoms on the surface of the shield will be ionized to form plasma.

Plasma has high conductivity and energy density, which will cause some damage to Connors' epidermis.

Connors felt the burning and pain in his skin, but he did not flinch.

(End of this chapter)

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