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April 5, 20260 citationsOpen Access

OS System / ε-Model — Chapter 37 — Structural Closure and Cross-Scale Balance (ε ≈ 0.5)

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DKDanijus Kazlauskas

Key Points

  • The central aim is to develop a numerical structure connecting various physical scales while maintaining balance and invariance.
  • Constructed a closure structure linking atomic, planetary, and light-scale systems.
  • Utilized explicit calculations with independently verifiable inputs and no assumptions.
  • Analyzed the structural balance through invariant operators applied across scales.
  • Achieved independent closure of atomic systems to ε ≈ 0.5.
  • Identified a key Earth-scale transition node and its internal return path.
  • Showed cross-scale propagation using identical operators leading to consistent structural values.

Abstract

This work presents a complete numerical closure structure connecting atomic-scale systems, planetary-scale relations, and light-scale reconstruction through invariant balance conditions. All calculations are explicitly shown and originate from independently verifiable numeric inputs. No assumptions, no omitted steps, and no parameter tuning are introduced. Key results: • Independent closure of atomic systems to ε ≈ 0.5• Earth-scale transition node (13.8477) and its internal return path• Cross-scale structural propagation through identical operators (×3600, ×1.2)• Emergence of partial and full light-channel regimes• Reconstruction of light-scale values through intermediate nodes (499.68, 600)• Multi-path convergence producing identical structural values The work demonstrates that: A single invariant relationε = v² / (r · S) remains consistent across all tested scales. The hierarchy changes only the projection format — not the underlying structure. This document is part of the ε-Model / OS System research series and is released in its final, non-modifiable form under IRCH Public Research License 1.0.

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Cite This Study

Danijus Kazlauskas (2026) studied this question.

synapsesocial.com/papers/69d1fcd4a79560c99a0a28b5https://doi.org/10.5281/zenodo.19406487
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