Celestial Electrodynamics
An electrodynamic plenum framework for celestial mechanics is presented in which orbital dynamics, mass ratios and surface gravities follow without Newtonβs constant . Space is modelled as a medium πΊof density , read through the magnetic bridge with : its Ο0=8.854Γ10β12 ππ πβ3Ο0=Ξ΅0π΅β2π΅β=1 πinertia is the field momentum of a magnetised medium and its stiffness is . Mass is π΅β2/ΞΌ0=Ο0π2bipartite, an inert Mahatva and an interactive Gurutva whose coupling is πππ=πΟπ’ππππππ=πΟ0reactive. The kinematic invariant replaces . The framework recovers , planetary Ξ¦=π£2ππΊππ=Ξ¦/π 2mass ratios to 1.2 percent (0.5 percent with the satellite-ranging ), the latitude variation of , Ξ¦βπsatellite speeds and Keplerβs three laws. The local plenum index supplies πΎ=1+2Ξ¦/ππ2()Mercuryβs 43 arcsec per century and the gravitational redshift. A Quadratic PIP Resonance Law, , holds to 1 to 10 percent. Two failures are reported, the headwind eccentricity Ξ¦πππ/Ξ¦ββΞ¦β/Ξ¦β()2law and the density-sorting law, and falsifiable tests are stated.
Authors
- Satinder Singh Malik (ORCID: https://orcid.org/0000-0002-6743-2102)
Publication Details
- Journal
- Zenodo (CERN European Organization for Nuclear Research)
- Published
- 2026-09-25
- DOI
- https://doi.org/10.5281/zenodo.22962204
- Primary Topic
- Pulsars and Gravitational Waves Research
- Type
- preprint