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July 13, 20261 citationsOpen Access

ECSM Without Curvature: A Finite-Response Medium Spine for Gravity, Electromagnetic Propagation, Matter, Measurement, Atomic Structure, Chemistry, and Thermodynamic Time

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ASAdam Sheldrick

Key Points

  • The research aims to formulate a non-geometric finite-response medium to explain physical phenomena without traditional geometric concepts.
  • Developed a coherent medium model with finite response to describe gravitational and electromagnetic characteristics.
  • Analyzed matter as stable response packets with properties like charge projection and internal orientation.
  • Consolidated theoretical results into a single publication while emphasizing empirical validation requirements.
  • Demonstrated that gravity-like behavior can be explained by stress gradients in the medium without traditional curvature concepts.
  • Found that light propagation is influenced by a corrected electromagnetic response, impacting impedance and normalization.
  • Formulated the thermodynamic arrow as a relaxation process with non-negative entropy production.

Abstract

This paper consolidates the ECSM reconstruction chain into a non-geometric finite-response medium spine. In the rebuilt formulation, physical metric geometry, spacetime curvature, geodesic motion, metric horizons and singularities are not primitive mechanisms. The primitive content is a coherent medium with finite response, coherence, stress, transport, relaxation, internal orientation, boundary gradients and stable localized response packets. Gravity-like behaviour is formulated through constitutive response burden and stress gradients. Clock shifts arise from reconfiguration burden. Light propagation is corrected by split electromagnetic constitutive response, n² = ZE/ZB, so a common scalar channel changes impedance and normalization but not propagation. Lorentz contraction is assigned to moving matter-response patterns rather than to space. Matter is represented as stable finite-energy response packets with triadic closure, charge projection and collective two-state orientation. Measurement is represented as detector-basin selection recovering Born weights as overlap measures. Atomic shells, periodicity and bonding are treated as response-degeneracy and closure phenomena. The thermodynamic arrow is formulated as finite-response relaxation with non-negative entropy production. The manuscript consolidates the NG1R-NG19R reconstruction chain into a single publication spine, separates derived results from scaffold claims, and states the empirical boundary: corrected SPARC/KiDS and CMB split-channel raw-data tests remain the decisive validation stage.

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Cite This Study

Adam Sheldrick (2026) studied this question.

synapsesocial.com/papers/6a5482a4475c38bf615a5c55https://doi.org/10.5281/zenodo.21300235
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