This article constitutes Part X of Wang’s Perceptual Field Theory (WPFT) and further develops its unified ontological framework. The paper reexamines two foundational topics in physics: free fall and quantum entanglement. Rather than disputing established experimental results, WPFT questions the interpretative assumptions underlying them. Free fall is interpreted not as the action of a gravitational force, but as a structured response process between an energy entity and the Earth understood as a large-scale energetic configuration. The apparent equivalence of acceleration in vacuum is treated as a resolution-dependent approximation, in which structural differences among entities are compressed below measurable thresholds. The equivalence principle is therefore regarded as empirically effective while remaining open to ontological reinterpretation. Quantum entanglement is reinterpreted as a correlation arising from shared generative conditions rather than from persistent nonlocal interaction. Once generation is complete, quanta are treated as independent entities whose correlations reflect structural isomorphism originating in common history. Correlation decay is described as the natural consequence of environmental divergence and structural differentiation. Throughout, the theory maintains a minimal causality principle: influence requires energy transmission, reception, and feedback. This work continues the integrated theoretical system of WPFT and should be read in conjunction with Part I for foundational definitions.
Hui Wang (Thu,) studied this question.