Biogeodynamic Unified Theory (v1. 0. 4): The Determinism of Living Worlds Abstract: The Hamieh-Tectonic Model (v1. 0. 4) provides a definitive resolution to the "Geodynamic Trilemma"—the paradox of why terrestrial planets with similar initial compositions embark on radically different evolutionary paths. This theoretical framework shifts the paradigm of planetary habitability from a stochastic anomaly to a deterministic mechanical outcome. The model posits that long-term planetary activity (tectonics, atmospheric stability, and internal heat retention) is governed by the continuous rheological intervention of a biosphere. Core Framework & Key Discoveries: The Rheological Fortress (Axiom XVIII): Establishes that dry lithospheric friction (0. 85) is sufficient to arrest plate tectonics. The model proves that biogenic lubricants (Extracellular Polymeric Substances - EPS) are mechanically required to reduce friction by 50\% to enable subduction and nutrient recycling. The Poroelastic Lung & 0. 13 mm Wobble: Resolves the Martian methane mystery by linking the 21 ppbv spikes (e. g. , Sol 2440) to the 0. 13 mm Chandler Wobble. Using the Cubic Law (k = b³/12s), the model demonstrates how microscopic orbital-induced crustal flexure triggers massive, synchronous gas releases from subsurface "Refugee Pockets. " The Metabolic-Proteomic Pivot: Identifies the forensic "Double-Key" signature of a stagnant-lid biosphere. Due to Molybdenum sequestration during the "Internal Quench, " the Martian biosphere pivoted to primitive Iron-only (Anf) Nitrogenase. This shift is verified by the 0\% ^15N and ^33S isotopic signatures discovered at Cheyava Falls and within the ALH84001 carbonates. The 9. 35-Tonne Census: Provides a thermodynamic back-calculation of the active Martian biomass required to maintain "Stationary Enthalpy Vents" (Bio-Columns) against the encroachment of the planetary Thermal Cage. Dataset Contents: This 12-file submission includes the complete mathematical engine, 22 forensic validation commands, and the high-resolution GPS mapping protocol for the ExoMars drilling mission. Additionally, it extends the model to exoplanetary targets (TRAPPIST-1e, L 98-59 d), defining the "Atmospheric Anchor" as the primary biosignature for JWST characterization. Methodology: Developed through multi-domain synthesis of geophysics, microbiology, and orbital mechanics. Data synchronization and forensic validation were assisted by Gemini 3 Deep Research (Feb 2026) to ensure cross-correlation with the latest NASA PDS, ESA PSA, and InSight RISE geodetic datasets. Official DOI: 10. 5281/zenodo. 19181868 License: CC BY-NC-ND 4. 0
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Mohamad Samir Hamieh
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Mohamad Samir Hamieh (Thu,) studied this question.
synapsesocial.com/papers/69c37b20b34aaaeb1a67d39e — DOI: https://doi.org/10.5281/zenodo.19181868