Mass and Radius of a Fabriton Particle

Journal Title: Engineering and Technology Journal - Year 2025, Vol 10, Issue 02

Abstract

In this research work, the mass and radius of a fabriton particle could be determined, and confirm that the subatomic particles and tremendous numbers of fabriton particles precisely fill the structure of atoms. Atom is not a vacuum ball as a whole. Protons and neutrons vibrate quickly beside one another in the nuclei of an atom, and electron particles orbit them on the outer edge. Fabriton particles have been distributed widely in the space of an atom, typically in the vacuum between subatomic particles to hold them gravitationally. An Atomic fabric could be distorted and evacuated by the rapid oscillation of protons and neutrons in the core of an atom, as a result, the tunnel vacuum, ripples, and gravitational tunnel waves produced continuously in the heart and outer shells of an atom to attract and repulse electron particles in different orbitals, and increase the stability of atoms. Quantum entanglement appears among subatomic particles by electromagnetic lines of subatomic particles and gravitational tunnel waves. The gravitational tunnel waves and electromagnetic spectrum can pass and distribute rapidly through the entire structure of an atom and the visible universe. The electromagnetic field appears during the continuous vibration of subatomic particles and charges. Furthermore, the gravitational field, gravitational force, and powerful gravitational waves could be formed from temporary distortions and gravitational tunnel waves that are appeared by an effect of mass, pressure, energy, and transition of subatomic particles and celestial objects through the dark fabric matter and energy of fabriton particles that existed in the structure of atoms and Universe.

Authors and Affiliations

Sabir Sadiq

Keywords

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  • EP ID EP759853
  • DOI 10.47191/etj/v10i02.18
  • Views 46
  • Downloads 0

How To Cite

Sabir Sadiq (2025). Mass and Radius of a Fabriton Particle. Engineering and Technology Journal, 10(02), -. https://www.europub.co.uk/articles/-A-759853