We present a comprehensive, multi-scale macroscopic framework wherein classical gravity, rela-tivistic kinematics, nuclear forces, and macroscale atmospheric physics emerge as scale-dependentbehaviors of a single, active background medium: a compressed quantum Bose-Einstein Condensateexecuting a Viscoelastic Superfluid Vacuum Flow. By replacing abstract, non-material spacetimegeometry with a physical medium governed globally by a frequency-dependent Equation of State,we eliminate the requirement for non-baryonic cold dark matter, cosmic inflation, and expanding-metric tensor fields. Baryonic mass aggregates operate as complex phase sinks for this substrate,actively generating inward radial velocity fields. We demonstrate that this fluid architecture na-tively derives Newton’s gravitational inverse-square law at local solar frames while preserving theWeak Equivalence Principle, handles achromatic gravitational lensing through graded fluid refrac-tion, and accounts for flat galactic rotation curves verified via automated least-squares fits across theSPARC database with a Reduced Chi-Squared score of 1.04. On subatomic scales, the frameworkresolves electron-proton collapse via phase radiation-pressure balances, models the strong force asconstant-tension pinned vortex filaments (∼ 1 GeV/fm), and maps radioactive beta decay to lo-calized hydrodynamic cavitation relaxation events where the intermediate W ±/Z0 states emergeas transient fluid voids. This structural scale-invariance is extended to terrestrial systems, deriv-ing cyclonic hemispheric spins from latitude-dependent vacuum field line orientations and modelinghurricane rapid intensification via non-linear latent heat phase-sinks. This treatise unifies quantumwave mechanics and macroscale astrophysics within a self-consistent, thermodynamically closedcosmic recycling loop.
Tristan Justice (Thu,) studied this question.