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August 21, 20260 citationsOpen Access

Research 5 Electromagnetic Rotational Resonance Cosmology

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DJDEOKHO JEONDJDeok-ho Jeon

Key Points

  • To introduce the Electromagnetic Rotational Resonance Cosmology framework linking cosmic structure, material formation, water stability, and biological organization through unified physical mechanisms.
  • Synthesized theoretical relationships among environmental temperature, pressure constraints, and electron mobility across astrophysical and molecular scales.
  • Demonstrates that low-temperature cosmic environments regulate electron mobility to drive rotational and compressive resonance, generating structures from atoms to galaxies.
  • Identifies water stability ranges and biological molecular organization as localized manifestations of universal resonance-pressure dynamics along a single physical axis.

Abstract

This study proposes the Electromagnetic Rotational Resonance Cosmology, a unified framework that explains cosmic structure, material formation, water stability, and biological organization through the continuous interaction of temperature, pressure, and electron dynamics. The extreme low-temperature environment of the universe regulates electron mobility and pressure conditions, providing the background in which resonance transitions into rotation and compression, forming structures ranging from atoms to planets, stars, and galaxies. These generative principles operate not only in high-density astrophysical objects but also in the temperature-stability range of water and in the molecular organization of biological systems. Accordingly, water and life can be understood as localized manifestations of the universal resonance–pressure mechanism. This synthesis offers an integrated interpretation that links the origins of the universe and life through a single physical axis. *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/6a87c4619842aaac2ffb0c80https://doi.org/10.5281/zenodo.18396163
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