Addendum to NavMesh Cosmology: A Deterministic Derivation of the Total Baryonic Mass of the Universe via Spatial Computational Latency
Abstract
In the foundational framework of NavMesh Cosmology, the 10^122 magnitude discrepancy of the Vacuum Catastrophe was resolved by redefining cosmological time as an emergent property of spatial computational latency, yielding a universal Slowdown Ratio (𝑆𝑟≈7.69×10^60) [1]. In this brief communication, we demonstrate that this purely geometric deceleration factor operates as a deterministic index of the universe's total processing load. By equating this latency ratio with the fundamental informational unit of mass (the Planck mass), we deterministically derive the total baryonic mass of the observable universe as 1.67×10^53 kg. This derivation achieves exact alignment with modern empirical astrophysical estimates, independently proving that macroscopic cosmological parameters are closed, interrelated properties of a discrete computational metric.
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Authors: Tomer Haimovich