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CONCEPT Paper, APS--Plasma (DPP) Invention Proposal: UFC July A\ Valid July 2025 to July 2026- Fluid Singularities as a Subset of Entropy Driven Heat Unification

newell, madison

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CONCEPT Paper, APS–Plasma (DPP) Invention Proposal: UFC July A Valid July 2025 to July 2026; Fluid Singularities Madison J. Newell∗ Embry–Riddle Aeronautical University, Daytona Beach, FL, USA (Dated: December 2025) This document records APS Plasma Division metadata and the submitted abstract text for an oral presentation titled A Unified Scientific Computational Framework: Entropy-Driven GUT & Heat Unification, Model Recursive Field Evolution and Emergent Gravity. We propose an entropy-driven model in which fundamental fields (including electromagnetic and plasma fields) evolve recursively under thermodynamic feedback from heat generation. Entropy growth modulates field-to-field coupling and diffusion-like updates, yielding an effective macroscopic emergence of gravitational behavior associated with energy concentration. We additionally note an abstract structural analogy between recursive field feedback and graph-theoretic correlation structure used in cognitive emulation, suggesting a potential bridge between physical field dynamics and symbolic cognition models. INTRODUCTION This file is intended as a provenance-stable record (July 2025–July 2026 validity window) of the APS Plasma Division (DPP) metadata and the associated abstract content, including the governing evolution equation used in the submission. It is a concept introduction into solving global singularity fluid solns. INVENTION TYPE American. By public posting. Will be submitted for validation of dates, and updated online with invention proposal confirmation. DRAFTED Drafted: December 2025. Version label: UFC July A (valid July 2025 to July 2026). PUBLIC POSTING DATE Public posting date: [insert official posting date/time if applicable]. METADATA_LOCATION 1. APS Plasma Division metadata location / archival pointer: [insert portal reference, screenshot location, or internal path]. With date of submission. ABSTRACT SUBMISSION Submission Title, Format, and Schedule Title: A Unified Scientific Computational Framework: Entropy-Driven GUT & Heat Unification, Model Recursive Field Evolution and Emergent Gravity Format: Oral Scheduled slot (as recorded): Nov. 21, 2025, 11:30 AM – 11:42 AM Presenter: Madison J. Newell (Embry–Riddle Aeronautical University, Daytona Beach) Authors: Madison J. Newell (Embry–Riddle Aeronautical University, Daytona Beach) Abstract Text, Exactly As Submitted (Submission Copy) In this work, we propose an entropy-driven model of unification that describes the recursive evolution of fundamental fields, including electromagnetic and plasma fields, under the influence of heat generation. The model encapsulates the dynamical interplay between field interactions and thermodynamic feedback, with heat generation driving entropy growth. This feedback ultimately leads to the unification of forces as entropy increases, with gravitational effects emerging naturally due to energy concentration. The governing equation for the evolution of the fields is given by dFi(t) dt=X j=i wij(S(t)) 1+αE Fj(t) + 1 1−Cd(B(S(t))) ∆Fi(t)+γheat Qheat(t),(1) 2 where Fi(t)represents the amplitude of field iat time t,wij(S(t)) is the feedback strength between fields modulated by the system entropy S(t), and Qheat(t)is the heat-generation term driving entropy growth. The recursive nature of this equation establishes a framework in which gravity emerges as an effective macroscopic response from feedback dynamics between fields. By analogizing the recursive structure of field evolution to graph theory correlations, we propose that this framework may have implications for cognitive processes, where fields evolve in a way that emulates cognitive functions such as learning and decision-making. Specifically, the recursive feedback loops described here mirror recursive processes underlying symbolic cognition, suggesting a potential bridge between physical field theory and neuroscience. The model provides a novel perspective on unification theory, with connections to high-energy physics and the emulation of cognitive systems through the mathematical formalism of graph-theoretic feedback structure. We apply an entropy-feedback model to classical mechanics problems, yielding velocity evolution that bounds energy, enhances dissipation, and suppresses blow-up. With smooth data, it ensures u(t)∈Hsfor all s≥1, preserving global regularity. We validate cosmological observations (via n-dmodels), confirming self-consistency and enabling the emergence of physical structures internally.[?] NOTES (1) Replace bracketed placeholders with your official archive locations/dates as needed. (2) If you later add references, include \bibliographystyle{apsrev4-2} and a \bibliography{...} block. ∗[email protected]