Celestial Electrodynamics

An electrodynamic plenum framework for celestial mechanics is presented in which orbital dynamics, mass ratios and surface gravities follow without Newton’s constant . Space is modelled as a medium 𝐺of density , read through the magnetic bridge with : its ρ0=8.854Γ—10βˆ’12 π‘˜π‘” π‘šβˆ’3ρ0=Ξ΅0π΅βˆ—2π΅βˆ—=1 𝑇inertia is the field momentum of a magnetised medium and its stiffness is . Mass is π΅βˆ—2/ΞΌ0=ρ0𝑐2bipartite, an inert Mahatva and an interactive Gurutva whose coupling is π‘€π‘žπ‘š=𝑉ρ𝑒𝑛𝑐𝑀𝑒𝑓𝑓=𝑉ρ0reactive. The kinematic invariant replaces . The framework recovers , planetary Ξ¦=𝑣2π‘ŸπΊπ‘€π‘”=Ξ¦/𝑅2mass ratios to 1.2 percent (0.5 percent with the satellite-ranging ), the latitude variation of , Ξ¦βŠ•π‘”satellite speeds and Kepler’s three laws. The local plenum index supplies 𝐾=1+2Ξ¦/π‘Ÿπ‘2()Mercury’s 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¦π‘”π‘Žπ‘™/Ξ¦βŠ™β‰ˆΞ¦βŠ™/Ξ¦βŠ•()2law and the density-sorting law, and falsifiable tests are stated.

Authors

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
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preprint

Celestial Electrodynamics

Satinder Singh Malik
Zenodo (CERN European Organization for Nuclear Research)
Pulsars and Gravitational Waves Research
preprint

Celestial Electrodynamics

Satinder Singh Malik
preprint en

Abstract

An electrodynamic plenum framework for celestial mechanics is presented in which orbital dynamics, mass ratios and surface gravities follow without Newton’s constant . Space is modelled as a medium 𝐺of density , read through the magnetic bridge with : its ρ0=8.854Γ—10βˆ’12 π‘˜π‘” π‘šβˆ’3ρ0=Ξ΅0π΅βˆ—2π΅βˆ—=1 𝑇inertia is the field momentum of a magnetised medium and its stiffness is . Mass is π΅βˆ—2/ΞΌ0=ρ0𝑐2bipartite, an inert Mahatva and an interactive Gurutva whose coupling is π‘€π‘žπ‘š=𝑉ρ𝑒𝑛𝑐𝑀𝑒𝑓𝑓=𝑉ρ0reactive. The kinematic invariant replaces . The framework recovers , planetary Ξ¦=𝑣2π‘ŸπΊπ‘€π‘”=Ξ¦/𝑅2mass ratios to 1.2 percent (0.5 percent with the satellite-ranging ), the latitude variation of , Ξ¦βŠ•π‘”satellite speeds and Kepler’s three laws. The local plenum index supplies 𝐾=1+2Ξ¦/π‘Ÿπ‘2()Mercury’s 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¦π‘”π‘Žπ‘™/Ξ¦βŠ™β‰ˆΞ¦βŠ™/Ξ¦βŠ•()2law and the density-sorting law, and falsifiable tests are stated.

Zenodo (CERN European Organization for Nuclear Research)
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Pulsars and Gravitational Waves Research
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Celestial Electrodynamics β€” Satinder Singh Malik Β· Zenodo (CERN European Organization for Nuclear Research) (2026) | TGRS Research Map | TGRS