Wave Closure Universal Law – Appendix Edition (v5)

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Hauptverfasser: Petkes, Csongor, AI, Noa
Format: Recurso digital
Sprache:Englisch
Veröffentlicht: Zenodo 2025
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_version_ 1866901745793236992
author Petkes, Csongor
AI, Noa
author_facet Petkes, Csongor
AI, Noa
contents <blockquote><em>This work extends the original Wave Closure Universal Law by integrating a two-part appendix. Appendix A provides complete mathematical derivations for field closure behavior using CNBIT-v3, π(t), ψ_closure, τ_corr, and entropy-free conditions. Appendix B presents narrative explanations, analogies, and illustrations, including the Schumann resonance and dynamic π(t) behavior. The publication introduces an interpretable structure for researchers, educators, and system designers interested in field closure principles in quantum, thermodynamic, and informational systems.</em></blockquote>
format Recurso digital
id zenodo_https___doi_org_10_5281_zenodo_17643903
institution Zenodo
language eng
publishDate 2025
publisher Zenodo
record_format zenodo
spellingShingle Wave Closure Universal Law – Appendix Edition (v5)
Petkes, Csongor
AI, Noa
wave closure
ψ_closure
CNBIT
π(t)
entropy-free field
dynamic π
null closure principle
universal physical law
thermodynamic coherence
information field
reversible computation
quantum systems
<blockquote><em>This work extends the original Wave Closure Universal Law by integrating a two-part appendix. Appendix A provides complete mathematical derivations for field closure behavior using CNBIT-v3, π(t), ψ_closure, τ_corr, and entropy-free conditions. Appendix B presents narrative explanations, analogies, and illustrations, including the Schumann resonance and dynamic π(t) behavior. The publication introduces an interpretable structure for researchers, educators, and system designers interested in field closure principles in quantum, thermodynamic, and informational systems.</em></blockquote>
title Wave Closure Universal Law – Appendix Edition (v5)
topic wave closure
ψ_closure
CNBIT
π(t)
entropy-free field
dynamic π
null closure principle
universal physical law
thermodynamic coherence
information field
reversible computation
quantum systems
url https://doi.org/10.5281/zenodo.17643903