Sci - Articulatory Field Equations for Language: Deriving Character Mass from Vocal Tract Physics

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1. Verfasser: Knight, Armstrong
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Sprache:Englisch
Veröffentlicht: Zenodo 2026
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_version_ 1866901264484270080
author Knight, Armstrong
author_facet Knight, Armstrong
contents <p><strong>Sci - Articulatory Field Equations for Language: Deriving Character Mass from Vocal Tract Physics</strong></p><p><em>Armstrong Knight — intent-tensor-theory.com</em></p><p>A mathematical mass function for written characters is derived from the physics of the human vocal tract using a 9-dimensional articulatory feature space. The word molecular weight MW correlates with word frequency at Spearman rho=0.88, age of acquisition at rho=0.92, and syllable count at rho=0.97, proving that articulatory physics encodes genuine linguistic structure without training data or corpus statistics.</p><p>Running implementation: <a href="https://intent-tensor-theory.com/applied-itt/">intent-tensor-theory.com/applied-itt</a></p>
format Recurso digital
id zenodo_https___doi_org_10_5281_zenodo_19412920
institution Zenodo
language eng
publishDate 2026
publisher Zenodo
record_format zenodo
spellingShingle Sci - Articulatory Field Equations for Language: Deriving Character Mass from Vocal Tract Physics
Knight, Armstrong
Intent Tensor Theory
intent-tensor-theory.com
ICHTB
Collapse Tension Substrate
i₀ scalar anchor
Science
articulatory physics
character mass
word molecular weight
<p><strong>Sci - Articulatory Field Equations for Language: Deriving Character Mass from Vocal Tract Physics</strong></p><p><em>Armstrong Knight — intent-tensor-theory.com</em></p><p>A mathematical mass function for written characters is derived from the physics of the human vocal tract using a 9-dimensional articulatory feature space. The word molecular weight MW correlates with word frequency at Spearman rho=0.88, age of acquisition at rho=0.92, and syllable count at rho=0.97, proving that articulatory physics encodes genuine linguistic structure without training data or corpus statistics.</p><p>Running implementation: <a href="https://intent-tensor-theory.com/applied-itt/">intent-tensor-theory.com/applied-itt</a></p>
title Sci - Articulatory Field Equations for Language: Deriving Character Mass from Vocal Tract Physics
topic Intent Tensor Theory
intent-tensor-theory.com
ICHTB
Collapse Tension Substrate
i₀ scalar anchor
Science
articulatory physics
character mass
word molecular weight
url https://doi.org/10.5281/zenodo.19412920