Theoretical modeling demonstrates a mechanical fluid framework unifying cosmic and quantum mechanics, suggesting dark energy is unnecessary.
Key Points
To establish a purely geometric and mechanical framework unifying quantum and cosmological phenomena under classical causality without invoking empty space or mathematical infinities.
Modeled space as a continuous energy medium governed by fluid dynamics, pressure gradients, and rotation vectors.
Derived a single three-variable master field equation to formalize mass as localized three-dimensional energy knots.
Applied classical energy conservation to calculate time dilation, cosmic expansion rates, and nuclear interaction thresholds.
Mechanically derived time dilation as an energy budget tax, reporting 100% precision with empirical GPS telemetry data.
Resolved the Hubble Tension and galactic rotation curves via outer boundary expansion and medium elasticity, eliminating the requirement for Dark Energy.
Formulated a solid-state blueprint for Low-Energy Nuclear Reactions utilizing lattice-induced phase synchronization to facilitate room-temperature fusion.