We propose a unified dynamical framework in which gravitational, quantum, and gauge phenomena emerge from a common morphic–energetic substrate. The theory is formulated through a single operator-valued balance law, the Universal Morphic Equation (UME), which equates horizon-localized fluxes of conserved currents to a bulk action defined over a covariant spacetime manifold. Standard Model gauge interactions are embedded explicitly via a renormalized morphic covariant derivative, while quantum behavior arises from a fundamental noncommutative algebra associated with discrete substrate excitations. In appropriate limits, the framework reproduces classical gravity, relativistic field dynamics, and canonical quantum mechanics, while resolving singular behavior through intrinsic strain saturation. The theory yields concrete, falsifiable predictions in cosmology, galactic dynamics, precision timing, and high-energy regimes. Experimental and observational pathways for testing these predictions are outlined.
Austin Friedrich (2026) studied this question.