Legacy physics relies on geometric abstractions to describe stellar collapse. This paper outlines the true mechanical engine of stellar evolution using the Electron Flow Model (EFM). By contrasting legacy models with EFM mechanics, we define the cause of supernovae, Electron Void Gravitational Spheres (EVGS), the ultimate thermodynamic sink of unbuffered protons, and high-density pulsars. EVGS are traditionally known as Black Holes. Addressing the traditional boundaries of the Standard Model, we mathematically demonstrate that the stellar core undergoes a rapid geometric realignment driven by fluid-dynamic pressure, rather than a passive gravitational crush. To validate this framework, we provide a falsifiable prediction regarding micro-stutter Gravitational Wave (GW) signatures unique to mechanical lattice failure. Foundational Mathematical Framework and Primary Theory (v41): https://doi.org/10.5281/zenodo.19672868 Interactive simulations and full computational framework available at: https://marabutmarabut.github.io/Theory-of-Gravity/
Marabūt et al. (Sun,) studied this question.