This manuscript reinterprets the 1%-precision Local Distance Network (H0DN) measurement, 73. 50 +/- 0. 81 km s^-1 Mpc^-1, within a static-universe information-fluid framework. Rather than treating the reported value as a late-time expansion rate, it argues that the observation constrains a reference quantity Iref = Ibase + Drel rather than the uncorrected primary quantity Ibase alone. The paper links this reinterpretation to the phase-model series and presents a provisional prior-predictive Monte Carlo showing that agreement at 73. 5 is obtained only after adding relativistic correction terms.
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