This repository contains a self-contained framework demonstrating the systemic derivation of fundamental physical constants and scaling boundaries from discrete coordinate constraints. All internal operations are evaluated in dimensionless, self-referential steps on a signed 32-bit integer grid.
The data illustrates that standard empirical scales emerge as a direct consequence of structural boundaries and geometric limits within a finite lattice system.
lattice_specification.txt: The complete, unformatted technical derivation data, including coordinate phase operators, metric bridge constants, processing tax calculations, and scaling matrices.LICENSE: Public domain waiver and source attribution statement.
The material is placed in the open-source information commons to provide a mathematically consistent alternative to continuous-space models that rely on un-derived empirical constants. The objective is to demonstrate a simplified, discrete baseline for standard scaling values to optimize theoretical resource allocation.