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August 21, 20260 citationsOpen Access

Research 6 Fundamental Structure of Matter Formation via Electromagnetic Rotational Resonance

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DJDEOKHO JEONDJDeok-ho Jeon

Key Points

  • Propose a unified genesis theory wherein deviations from an absolute zero reference state of electromagnetic rotational resonance sequentially produce electrons, heat, volume, and material phases.
  • Redefined absolute zero (−273 °C) as the fundamental baseline state of electromagnetic rotational resonance.
  • Modeled sequential matter genesis across electronization, thermal emergence, volume formation, and phase differentiation using rotational superposition and electron–electron friction dynamics.
  • Reinterpreted temperature and pressure as unified manifestations of a singular underlying force that contracts and rotates resonant imbalance rather than separate environmental variables.
  • Identified thermal bifurcation points to explain transitions between solid, liquid, and gaseous states through rotational superposition and inter-electron friction.

Abstract

This paper departs from conventional approaches that take matter as the starting point by redefining the absolute temperature of −273 °C as the reference state of electromagnetic rotational resonance, and by proposing a unified genesis theory in which deviations from this reference state sequentially induce electronization, thermal emergence, volumetric formation, and phase differentiation of matter. The intrinsic nature of the electron arises not from external conditions but from the cosmic pressure inherent to resonance itself, while temperature and pressure are interpreted not as environmental variables but as distinct manifestations of a single underlying force that contracts and rotates resonant imbalance. The present study introduces the concept of thermal bifurcation points, governed by the degree of rotational superposition and electron–electron friction, to provide a detailed account of the formation of solid, liquid, and gaseous states, and repositions quantum, thermodynamic, and material phenomena under a higher-order generative principle. *Note: This paper is part of a series of studies. For a more comprehensive understanding, readers are encouraged to refer to the materials listed below.

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Cite This Study

JEON et al. (2025) studied this question.

synapsesocial.com/papers/6a87c4629842aaac2ffb0c81https://doi.org/10.5281/zenodo.18396185
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