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This work establishes a formal axiomatic framework for the Symbolic Grammar G-HLV, grounding it in five core axioms that define Spiral Time, a symbolic operator algebra, field coupling, and a spiral metric tensor. * We demonstrate how the HLV framework connects to established physics by providing direct mappings to Quantum Field Theory and General Relativity and by showing its reduction to standard field theories under specific limits. * The theory yields distinct and testable predictions, such as the modulation of biophoton emissions, anomalous scattering spectra in high-energy cosmic rays, and potential explanations for anomalies in the Cosmic Microwave Background. * To support validation and further research, we provide numerical simulation examples and propose the development of a symbolic grammar parser to automate calculations.

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Zenodo
DOI
10.5281/zenodo.15776810

This work establishes a formal axiomatic framework for the Symbolic Grammar G-HLV, grounding it in five core axioms that define Spiral Time, a symbolic operator algebra, field coupling, and a spiral metric tensor.  * We demonstrate how the HLV framework connects to established physics by providing direct mappings to Quantum Field Theory and General Relativity and by showing its reduction to standard field theories under specific limits.  * The theory yields distinct and testable predictions, such as the modulation of biophoton emissions, anomalous scattering spectra in high-energy cosmic rays, and potential explanations for anomalies in the Cosmic Microwave Background.  * To support validation and further research, we provide numerical simulation examples and propose the development of a symbolic grammar parser to automate calculati ons.

You can write a PREreview of This work establishes a formal axiomatic framework for the Symbolic Grammar G-HLV, grounding it in five core axioms that define Spiral Time, a symbolic operator algebra, field coupling, and a spiral metric tensor. * We demonstrate how the HLV framework connects to established physics by providing direct mappings to Quantum Field Theory and General Relativity and by showing its reduction to standard field theories under specific limits. * The theory yields distinct and testable predictions, such as the modulation of biophoton emissions, anomalous scattering spectra in high-energy cosmic rays, and potential explanations for anomalies in the Cosmic Microwave Background. * To support validation and further research, we provide numerical simulation examples and propose the development of a symbolic grammar parser to automate calculations.. A PREreview is a review of a preprint and can vary from a few sentences to a lengthy report, similar to a journal-organized peer-review report.

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