The Electromagnetic Architecture Theorem: A Mass-Independent Universal Framework of Central Organization Extending from Matter to the Atmosphere and from Gravity to Orbital Order
- Posted
- Server
- Zenodo
- DOI
- 10.5281/zenodo.23135001
The Electromagnetic Architecture Theorem proposes a mass-independent framework in which matter, planetary structure, atmospheric continuity, center-directed acceleration, and orbital motion are examined as potentially related manifestations of a common central electromagnetic organization.
The framework introduces several geometric and kinematic relations, including K² = rv², 4πrv² = 4πr²g, Wₒ = 4π²r²v², and D_EM = v²/(4πr²), leading under the proposed central scaling to D_EM ∝ r⁻³. Applications are explored using the Earth–Moon system, planetary orbits, satellite systems, and preliminary comparisons with independent magnetic-field observations.
The manuscript explicitly distinguishes algebraic identities derived from the same orbital variables from genuinely independent empirical tests. It proposes that the electromagnetic interpretation should ultimately be evaluated using independent measurements of magnetic and electric fields, plasma density, current density, Poynting flux, ionization, atmospheric dynamics, and related quantities.
This preprint is released for open scientific review, criticism, replication, and falsification. Particular attention is invited to dimensional consistency, mathematical redundancy, alternative conventional explanations, regime dependence, and independent observational tests of the proposed electromagnetic scaling relations.