#Subatomicparticlescorescollision
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Subatomic particles cores collision
When two subatomic particles crash into each other, the energy disturbance in the reaction between similar kinds of rays in their cores depends on the strength of impact of those subatomic particles. After the impact, the similar kinds of rays in that particle's core, which absorbed the energy from the impact, received foreign potential energy. In this case, the foreign energy line flows in a different direction, than the energy line of reaction between the similar kinds of rays. This results in a change of the latter energy line's direction. The new direction depends on the spreading speed of both subatomic particles, which are going to crash into each other. The faster moving particle determines the new direction of similar kinds of rays in the particle, which is being attacked. The stronger impact of two subatomic particles is, the larger amount of foreign potential energy is received by similar kinds of rays. This causes the increase of period of time until those similar kinds of rays (which temporarily lost contact between each other because of that impact) contact with each other again and renew their previous reaction. Consequently, it reduces the possibilities for those similar kinds of rays to contact with each other again because in that case those rays move away from each other in larger distance and, for that reason, it weakens the attraction force between them. This leads to the stronger influence of attraction forces from external sources. These factors make the compound of similar kinds of rays less stable and reduce it's density. Therefore, if the impact of two subatomic particles is strong enough, it can cause their demolition. In order for it to happen, the force of impact should be so strong, that it would cause the similar kinds of rays to move away from each other in such large distance, that the external attraction forces would become stronger than the attraction force between those rays. After that, this subatomic particle would be destroyed because those similar kinds of rays, which were in this particle's composition, would become a part of some kind of foreign chain reaction. So, this is an example of how phenomenons of the similar origin could become destructive forces to each other. If all subatomic particles in the Universe were created at the same time, so, in that case, which was described in the given example, both subatomic particles would be equally destroyed after the collision. And if all subatomic particles were created at different times, so, in that case the older particle would be destroyed and the newer would survive.
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