Project Synthesis proposes a unified information-theoretic framework wherein spacetime, general relativity, and quantum mechanics are modeled not as distinct physical domains, but as emergent properties of a distributed, multi-generational computational network. By replacing empty geometric space with a Quantum Fluid Vacuum (QFV), the framework derives the speed of light as an emergent acoustic propagation limit rather than a fundamental constant. Stellar-mass black holes are re-evaluated from singular destruction wells into holographic compression and transmission nodes that route differential metadata (I) via Einstein-Rosen bridges to spawn child microverses during reheating events. Furthermore, macroscopic cosmic expansion is explained through the outward propagation of concentric acoustic wave crests, eliminating the need for speculative dark energy. Finally, temporal progression is locked to an absolute holographic broadcast frame (now = 1), and physical reality is dynamically rendered through wave-triggered mechanical interactions in the superfluid.
Richard Little (Thu,) studied this question.