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August 21, 20260 citationsOpen Access

Research 7-2 Cosmic Dynamical Rotational Pressure and Temperature-Driven Contraction

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DJDEOKHO JEONDJDeok-ho Jeon

Key Points

  • To establish a unified theoretical framework explaining cosmic rotational pressure, planetary formation, and matter dynamics through temperature-driven contraction relative to absolute zero.
  • Formulated a conceptual physics framework defining temperature-driven contraction toward absolute zero (0 K, −273 °C) as a universal background pressure state.
  • Modeled phase interactions between thermal expansion and background rotational contraction across microscopic electronic systems and macroscopic cosmic structures.
  • Proposes that rotational order emerges as the unique stable physical mechanism that prevents structural collapse under background temperature-driven contraction.
  • Describes how interactions between contraction phases and counter-phase thermal expansion govern the redistribution, expansion, collapse, and re-assimilation of orbital layers.
  • Identifies magnetic fields, electrical pressure effects, and atmospheric pressure as unified spatial manifestations of electronic activation and rotational phase configurations.

Abstract

This study presents a unified interpretation in which cosmic-scale dynamical rotational pressure, internal rotational pressure within matter, and the formation of planets and orbital systems originate from the resonant intrinsic nature of temperature-driven contraction, defined with respect to the background environment of the universe at absolute zero (0 K, −273 °C). Temperature contraction is a universal background pressure condition that drives physical systems toward a reference state in which electronic motion and resonance are suppressed. Under this condition, space selects rotational order as the unique stable solution that avoids structural collapse. In contrast, thermal energy acts as a deviation from this contraction reference state and induces counter-phase expansive rotational components relative to the existing rotation. The interaction between these phases gives rise to electronic activation, redistribution of layered (orbital) structures, and the expansion, collapse, and re-assimilation of orbital systems, appearing as a common structural pattern that spans both microscopic and macroscopic scales. Furthermore, this study demonstrates that pressure phenomena traditionally distinguished as magnetic fields, electrical pressure effects, and atmospheric pressure are likewise interconnected, representing manifestations of electronic activation and rotational–configurational order projected into space under differing conditions. On this basis, the present work proposes a new integrative framework that reinterprets cosmic structure and material dynamics through the central concepts of temperature-driven contraction and rotational phase order. *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/6a87c4639842aaac2ffb0c83https://doi.org/10.5281/zenodo.18396228
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Also Consider

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

  1. 1[Research 19] A Phase-Based Unified Interpretation of Pressure Phenomena Based on Thermal Contraction Pressure2026
  2. 2[Research 20] R-1 Interpreting the Universe as a Sea of Resonant Thermo-Contraction Pressure2026
  3. 3[Research 20] R-1 Interpreting the Universe as a Sea of Resonant Thermo-Contraction Pressure2026
  4. 4[Research 23] R-2 "Mechanisms Governing the Generation and Phase Transition between Waves and Particles/Flow (Motion) in Rotational Resonance Cosmology"2026
  5. 5[Research 23] R-2 "Mechanisms Governing the Generation and Phase Transition between Waves and Particles/Flow (Motion) in Rotational Resonance Cosmology"2026