Atomic Nuclei Structure
Atomic Nucleus as unique particle

Of ferman: Fernando Mancebo Rodriguez--- Personal page. ----Spanish pages

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Atomic Nuclei are unique particles

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After many tests and experiments on particle accelerators, we have not get to the understanding of the diversity of particles that are obtained from the atomic nucleus alone, but we have get a huge confusion impossible to understand and explain.
At this point, I would like to revise the prediction in my model. (1992) "The Standard Theory flaws: When more sub-atomic particles are discovered, less sense the Standard Theory has".

The answer and solution to this enigma is simple, according to this model:
Atomic nuclei such as solar nuclei (electrons, planets, etc.) are unique particles that can be destroyed in as many particles as we want to do.
Of course, the more destruction potential we apply, the greater the number of particles we will obtain.

However, in any large concentration of matter, due to the density and pressure of the energy it contains, fields of electromagnetic forces are produced around, with positive charge, which will subsequently impel these particles to form orbital systems with others, and this way, to have a balance of most adequate energy distribution.
Therefore, let's not look for the charges within the nuclei or the large particles because they are not there, they are on the electromagnetic fields created around them.

On the other hand, in the larger particles we can differentiate the large particles or atoms, whose electromagnetic potential is very large and they have the ability to form orbital systems in complete energy balance, that is, create orbits and capture orbitals in them and also capture complementary energy particles to achieve the total balance of energy in the system.
In contrast, intermediate particles (leptons) have the capacity to promote orbits and capture orbitals (neutrinos), but they have no capacity to capture complementary energy particles, which makes them negative due to lack of internal energy.

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