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Full-Domain Topological Relational Field Theory: A Unified Thermodynamic, Kinetic, and Topological Framework for 0–3D Hydrogen-Bonded Systems— Homologous Resolution of Six Iconic Anomalies: 4 °C Density Maximum, 228 K Supercooled Water Singularity, Ambient Dielectric Anomaly, Freestanding Low-Dimensional Ice Stability, Revised Phonon Instability Criterion, Pauling Residual Entropy

2026-08-20

Abstract excerpt

The physical properties of hydrogen-bonded systems spanning zero to three dimensions—covering low-dimensional ices, bulk liquid water and biological hydration layers—are characterized by disjoint theoretical formalisms, without a consistent quantitative analytical toolkit. This work constructs an axiomatic Topological Relational Field Theory (TRFT) rooted in the core axiom that relational connections precede discr...

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Literature Corpus work
f9307a4c-a56a-5676-bb60-6f398335e4a2
DOI
10.20944/preprints202608.1400.v1
Open publication

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Full-Domain Topological Relational Field Theory: A Unified Thermodynamic, Kinetic, and Topological Framework for 0–3D Hydrogen-Bonded Systems— Homologous Resolution of Six Iconic Anomalies: 4 °C Density Maximum, 228 K Supercooled Water Singularity, Ambient Dielectric Anomaly, Freestanding Low-Dimensional Ice Stability, Revised Phonon Instability Criterion, Pauling Residual EntropyDOI 10.20944/preprints202608.1400.v1
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