Davini Zero-Contradiction Law — Adaptive Pause Validation
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This record is part of the Davini Zero-Contradiction Law™ Validation Archive, documenting the first full real-time validation phase of the Zero-Contradiction Law (ZC*). Series I: Adaptive Pause Validation — Oscillator Resilience under Environmental Noise demonstrates how coupled systems preserve coherence and recover stability after perturbation, validating the ZC* constant as a universal equilibrium indicator. Six interconnected real-time experiments (T₁–T₆) simulate environmental stress, delay, and cross-domain coupling across physical and informational oscillators. Results confirm the predicted adaptive pause behavior: under incoherent environmental input, systems temporarily suspend interaction (pause) rather than collapse, resuming stable synchronization near ZC ≈ 0.64* once coherence returns. Contents include: ZC* functional definition and parameters Dual-oscillator, delay, and cross-scale models Python scripts and CSV datasets (5 000 samples per test) Reproducible figures and mean-variance reports for each T₁–T₆ run All code and data reflect live computational validation of the Davini Zero-Contradiction Law across physical–informational coupling layers. Access: Restricted — full datasets and scripts available for peer or institutional review upon request.



