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May 8, 20260 citationsOpen Access

Monistic Continuum Model (MCM) – Proton, Neutron, Electron

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WMWalter Moosbrugger

Key Points

  • The research aims to enhance the understanding of the Monistic Continuum Model (MCM) and its implications for protons, neutrons, and electrons.
  • Revised comparison of 27 MCM proton variants with known QCD/PDG resonances.
  • Systematic derivation of tension geometries, parity spaces, and coupling distances.
  • Geometric explanation of phenomena like proton stability and neutron decay.
  • MCM establishes a clearer mapping between MCM energy levels and the experimental QCD spectrum.
  • Protons, neutrons, and electrons are presented as stable or metastable tension-vortex states, rather than point-like particles.
  • The model reproduces various known phenomena while offering a new ontological reinterpretation.

Abstract

Volumn 28 EN/DE – Proton, Neutron, Electron In version 1.1, the comparison of the 27 MCM proton variants with the known QCD/PDG resonances has been revised using a refined three‑color scheme and a clearer mapping of the resonance clusters. This update makes the structural relationship between the discrete MCM energy levels and the experimental QCD spectrum significantly more transparent and scientifically well‑defined. .... introduces the foundational structures of Monistic Continuum Model (MCM) and applies them to the three fundamental vortex configurations of matter. The volume demonstrates that proton, neutron, and electron are not point‑like particles but stable or metastable tension‑vortex states of a continuous medium.It systematically derives parity spaces, coupling distances, tension geometries, and the resulting 27 proton and 27 neutron variants.The volume provides a geometric explanation for proton stability, neutron decay, charge, mass, tension profiles, and experimental signatures observable in accelerator experiments.A comparison with QCD and the Standard Model shows how MCM reproduces many known phenomena while offering a deeper ontological reinterpretation.HEFT 28 forms the conceptual foundation for volumes 29–40, which extend the framework to nuclear physics, binding energies, isotope structures, quantum mechanics, and cosmology. Volumn 28 EN/DE – Proton, Neutron, Elektron Die Gegenüberstellung der 27 MCM‑Protonvarianten mit den bekannten QCD/PDG‑Resonanzen wurde in Version 1.1 durch ein präziseres Drei‑Farben‑Schema und eine klarere Zuordnung der Resonanzcluster überarbeitet. Dadurch wird die strukturelle Beziehung zwischen den diskreten MCM‑Energieniveaus und dem experimentellen QCD‑Spektrum deutlich transparenter und wissenschaftlich eindeutiger. .... führt die grundlegenden Strukturen der Monistischen Kontinuumsmodell (MCM) ein und wendet sie auf die drei stabilen bzw. metastabilen Wirbelkonfigurationen der Materie an. Das Heft zeigt, dass Proton, Neutron und Elektron keine punktförmigen Teilchen sind, sondern stabile Spannungs‑ und Wirbelzustände eines kontinuierlichen Mediums.Es werden Paritätsräume, Kopplungsabstände, Spannungsgeometrien und die daraus resultierenden 27 Proton‑ und 27 Neutronvarianten systematisch hergeleitet.Darüber hinaus bietet das Heft eine geometrische Erklärung für Protonstabilität, Neutronzerfall, Ladung, Masse, Spannungsprofile sowie experimentelle Signaturen in Beschleunigerexperimenten.Ein Vergleich mit QCD und Standardmodell zeigt, wie die MCM viele bekannte Phänomene reproduziert, jedoch ontologisch neu interpretiert.HEFT 28 bildet die Grundlage für die Bände 29–40, in denen Kernphysik, Bindungsenergien, Isotopenstrukturen und kosmologische Anwendungen behandelt werden.

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Walter Moosbrugger (2026) studied this question.

synapsesocial.com/papers/69fd7f4fbfa21ec5bbf07ce7https://doi.org/10.5281/zenodo.20052445
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Monistic Continuum Model (MCM) – Proton Variants and Their Consequences2026
  2. 2Monistic Continuum Model (MCM) – Vortex Particles and Their Structure2026
  3. 3MCM Concretization - Experiments2026
  4. 4MCM Concretization - Experiments2026
  5. 5MCM Concretization - Numeric/Simulation2026