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September 10, 2025Open Access Government0 citations

Positron and electron catalysis of neutrino hadronization: How our universe was made. Part II

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CVC.G. Vayenas

Key Points

  • This research indicates that the Rotating Lepton Model may enhance our understanding of particle interactions and mass calculations.
  • The study shows that positron and electron catalysis play crucial roles in the process of neutrino hadronization.
  • The authors utilize advancements in particle physics to provide deeper insights into the structure of hadrons and bosons.
  • Research highlights the impact of classical models like Bohr in shaping modern approaches to chemical synthesis and particle behavior.

Abstract

Positron and electron catalysis of neutrino hadronization: How our universe was made Constantinos G. Vayenas, Dionysios Tsousis and Eftychia Martino discuss advancements in understanding particle physics through the development of the Rotating Lepton Model (RLM). The development of the Bohr model for the H atom (Fig. 1) has played a central role in reaching our current level of understanding of chemical synthesis. In recent years, the development of the Rotating Lepton Model (RLM) of hadrons and bosons (1-4) provided an equally effective approach for modeling the structure and accurately computing the masses of subatomic particles, such as hadrons and bosons, nuclei, and even cosmic rays. (4)

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Cite This Study

C.G. Vayenas (2025) studied this question.

synapsesocial.com/papers/68c1ae7054b1d3bfb60e63a8https://doi.org/10.56367/oag-047-11587
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