What happens to a gas if its temperature keeps rising?
At this point, the atoms that make up its molecules will separate, forming independent atoms. This process is the separation of molecules within the gas.
As the temperature continues to rise, electrons will be stripped from the atoms. This process is known as atomic ionization.
When ionization occurs frequently enough for the concentration of electrons and ions to reach a certain level, the state of matter undergoes a fundamental change, and its properties become completely different from those of gas.
To distinguish it from gas, solid, and liquid, this fourth state of matter is called the Plasma State.
It must be understood that flames are not pure Plasma State, but they are Plasma State in a different state of matter from gas.
The most common plasma in the universe is, if you look up, the sun in the sky.
That thing is too large, so let's talk about a common and smaller plasma.
For example, a plasma welding arc.
The Self-Detonating Plasma Insect, also known as the Plasma Insect, uses high-frequency ionization to transform the surrounding gaseous matter into the fourth state of matter, the Plasma State.
Because plasma temperatures can reach from several million to tens of millions of degrees, any material before it will instantly evaporate. Its destructive power is therefore astonishing.
Even the Plasma Insect itself cannot maintain this state for long, resulting in its destruction by high temperatures. From activation to death, its lifespan usually lasts only a few minutes, but that is entirely sufficient for use as a shell.
The problem with the Plasma Cannon lies in stability. When constrained by a magnetic field, not only do particles with different charges move in different directions, but the trajectories of charged particles also become unstable due