Deterministic Convergence in High-Precision Numerical Rectification: A Refutation of Probabilistic Measurement Models
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Contemporary physical measurements heavily rely on probabilistic models to interpret data, often dismissing high-precision fluctuations as thermal noise. This research introduces the ADH-LOGIC framework, a deterministic rectification system capable of maintaining 100-digit precision without statistical averaging. By employing bit-wise extraction, we demonstrate that voltage-to-current ratios converge to a stable "Stop-Friction" equilibrium point at the 50th to 60th decimal places, consistently terminating in values of 0 or 5. Our findings provide empirical evidence that these terminal digits are not noise, but fundamental physical constants. This study fundamentally challenges the validity of existing probabilistic measurement frameworks and establishes a new paradigm of Deterministic Physics.



