Biologyarticle2026-08-08

Synchronicity, Epidermal Resonance, and Phoneme Formation: A Monopole Gravitational Wave Hypothesis for Auditory Modulation

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Abstract

This paper extends the monopole hydrogen bond resonance model developed in earlier work to biological systems, focusing on the human epidermis as a vibrational interface capable of interacting with gravitational waves of wavelength approximately 149 micrometers. Monopole driven modulation of hydrogen bond lengths in water and oxygen produces phase separation films of thickness 149 micrometers, a scale identical to the thickness of the human epidermis. Hydrogen bond networks in keratin, lipids, and intercellular water exhibit the same dissociation and reformation dynamics as hydrogen bonds in water ice. As a result, epidermal structures such as the cochlea and outer ear behave as epidermis linked auditory structures and participate in the same 2.012 terahertz resonance that governs monopole interactions. Harmonic analyses demonstrate that epidermal hydrogen bonds, diatomic oxygen, and water molecules share resonant frequencies with monopole generated gravitational waves. At the same time, phoneme emergence may be subtly biased by epidermal resonance. If epidermal hydrogen bonds resonate at monopole frequencies, then epidermal vibration may modulate cochlear sensitivity, neural resonance patterns, or auditory thresholds. This provides a physical pathway through which environmental gravitational wave conditions could influence phoneme formation.

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View paper (DOI)Open access versionOpenAlexZenodo (CERN European Organization for Nuclear Research)Published 2026-08-08

Authors: Frost Randall S.