Science Score: 26.0%

This score indicates how likely this project is to be science-related based on various indicators:

  • CITATION.cff file
  • codemeta.json file
    Found codemeta.json file
  • .zenodo.json file
    Found .zenodo.json file
  • DOI references
  • Academic publication links
  • Academic email domains
  • Institutional organization owner
  • JOSS paper metadata
  • Scientific vocabulary similarity
    Low similarity (8.3%) to scientific vocabulary
Last synced: 10 months ago · JSON representation

Repository

Basic Info
  • Host: GitHub
  • Owner: KaworuHaitani
  • License: other
  • Default Branch: main
  • Size: 0 Bytes
Statistics
  • Stars: 0
  • Watchers: 0
  • Forks: 0
  • Open Issues: 0
  • Releases: 1
Created about 1 year ago · Last pushed about 1 year ago
Metadata Files
Readme License Citation

README.md

HQEC Theory System v.3.03

Overview

HQEC Theory System v.3.03 is an advanced theoretical framework that unifies quantum information processing across multiple scales through the separated interference tensor formalism. This version introduces significant improvements including the primordial equation with explicit physical constants and the Codex-Φ syntactic representation layer.

Key Features

  • Separated Interference Tensor: A novel mathematical formalism that decomposes information transfer into symmetric (S) and antisymmetric (A) components
  • Primordial Equation Ω_c(Φ)=0: Core equation governing the unified field Φ with explicit incorporation of fundamental constants
  • Topological Geometric Interpretation: Mathematical foundation based on differential forms and cohomology
  • Quantum Fisher Correction: Precision adjustments for quantum fluctuations
  • Observational Curvature K_ij: Direct measure of information transfer irreversibility
  • Codex-Φ Formalism: Complete syntactic representation system with proof mechanisms

Applications

The theory provides mathematically consistent explanations for phenomena across multiple scales: - DNA Scale (k=87): Electron tunneling probability in DNA - Neural Scale (k=140): Phase synchronization in brain waves - Astronomical Scale (k=220): Galaxy rotation curves

Numerical Verification

Each application area includes numerical predictions that match experimental data within 2% error margin, providing strong validation for the theoretical framework.

Documentation

Comprehensive mathematical derivations, proofs, and experimental validations are provided in the repository files.

Citation

If you use this theoretical framework in your research, please cite it using the information in the CITATION.cff file.

License

This theoretical framework is provided for academic and research purposes.

Contact

For questions or collaborations, please reach out through the repository issues system.

Owner

  • Login: KaworuHaitani
  • Kind: user

GitHub Events

Total
  • Release event: 1
  • Push event: 2
  • Create event: 3
Last Year
  • Release event: 1
  • Push event: 2
  • Create event: 3