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critical-damping

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Cosmological applications of the SymC framework. Applies χ ≈ 1 stability principles to universe-scale phenomena including cosmic acceleration onset, black hole thermodynamics, and cyclical cosmology. Demonstrates framework consistency from quantum boundaries to cosmic structure.Retry

  • Updated Sep 22, 2026
  • TeX

Geophysics: Geophysical applications of the SymC framework. Applies χ ≈ 1 stability principles to planetary systems including seismic dynamics and fault behavior. Foundation for expanding into broader planetary sciences as the framework develops.

  • Updated Sep 22, 2026

Economic applications of the SymC framework. Applies χ ≈ 1 stability principles to market microstructure, distinguishing governed systems (HFT-stabilized) from ungoverned systems (selection-driven). Demonstrates framework universality in human adaptive systems.Retry

  • Updated Sep 22, 2026

This repository contains data, figures, and analysis supporting SymC Power Grid Optimization, which demonstrates predictive grid stability through scale-invariant substrate inheritance. Using synchrophasor data, the work shows early-warning precursors, irreversible degradation, and control protocols grounded in critical-damping physics.

  • Updated Sep 23, 2026
  • TeX

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