Why ℏ in E= ℏf ?A Mechanistic Interpretation of Action and Frequencyin a Computed Universe
Why ℏ in E= ℏf ?A Mechanistic Interpretation of Action and Frequencyin a Computed Universe
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Original abstract
This paper explores the fundamental role of the reduced Planck constant (ℏ) within the Computed Universe (CU) model — a framework in which physical laws emerge from surface-based causal update mechanics. Focusing on the quantum identity E = ℏf, the paper provides a mechanistic derivation of ℏ as a unit of action per voxel, linking frequency and energy via discrete transitions across the causal surface.Key contributions include:A geometric and computational interpretation of ℏ as quantized surface action propagation, not merely a scaling factor.Demonstration that for massless entities like photons, frequency emerges as the rate of causal tick emissions across the voxel substrate.Reframing of E = ℏf as a surface-level propagation identity that aligns with the CU model’s derivation of E = p^3/c and E = mc^2 as special cases.A novel perspective in which quantum uncertainty and discrete action flow naturally from the CU model’s causal update logic.Connection of ℏ to the Planck surface unit s_P = l_P^2, establishing a fundamental link between surface geometry and quantum energy propagation.This paper situates ℏ within a broader unification of physics, alongside c and G, and complements the CU model’s derivation of classical and gravitational constants. By grounding quantum frequency in voxel-based propagation, it provides a path to integrating quantum field theory and general relativity through causal geometry.