Abstract This paper introduces the Theory of Synchronized Scale Geometry (SSG), a novel theoretical framework aimed at resolving the conceptual and philosophical divergence between General Relativity (the macro-universe) and Quantum Mechanics (the micro-universe). The theory posits that the seemingly paradoxical behaviors observed at the subatomic level—such as superposition, wave-particle duality, and quantum entanglement—are not governed by a separate, non-deterministic physics. Instead, they are the geometric consequences of minimized spatial scales functioning in perfect synchronization with maximized temporal frequencies. SSG suggests that the universe operates under a single, unified rule of spatiotemporal scaling where the internal clock of a system accelerates proportionally as its spatial volume decreases. Consequently, what modern physics terms "quantum weirdness" is reinterpreted as an observational and measurement illusion caused by the structural limitations of macroscopic observers interacting with ultra-high-frequency temporal matrices.
Cengiz Gezgin (Tue,) studied this question.
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