WRRA M Integrated Measurement Case 1.0: Address Conditioning, Finite Record, SI Energy and Homogeneous Pressure
This companion review case implements the upstream–downstream connection of the reviewed WRRA M integrated manuscript (DOI 10.5281/zenodo.23126800). Authors: Wonsik Choi and Jeongin Choi. Verified/frozen inputs → WRRA transformations → numerical outputs → declared falsification checks. Address conditioning prepares a two-mode proton internal state in the inherited 95-dimensional Hamiltonian. One ideal X-basis measurement writes a finite record. The reference-matched SI energy and an explicit supplier budget are carried into pressure and homogeneous deceleration diagnostics from the same energy expression. The fixed 1 m³ mean-ensemble ledger has initial energy density 7.6689477678e-10 J/m³ and mean supply 7.0378712840e-12 J. Outside the supplier boundary q changes from -0.52855 to -0.519196728075; including the pressureless supplier conserves total energy and leaves its own q constant. The expected occupancy is externally matched and is not a fractional realized proton. Conditional repeated-readout probabilities use the declared proper-time clock mapping. Fresh replay passes 450 original-stage software checks and 26 case connection checks, with zero failures. The ZIP includes unchanged source dependencies, pinned runtime requirements, executable reproduction, full-precision JSON/CSV output and integrity checksums. Korean and English five-page PDFs and editable DOCX manuscripts are also provided separately. This is a conditional mathematical/computational review sample. Autonomous apparatus dynamics, cumulative reset/storage costs, actual abundance and a full nonuniform covariant evolution remain open. The separate prime-parts research supplies no inputs. GitHub companion folder: https://github.com/Wonsik-Choi-janefather/wrra-m-0.1/tree/main/integrated/cases/measurement_v1_0
Authors
- Wonsik Choi
- Jeongin Choi
Publication Details
- Journal
- Zenodo (CERN European Organization for Nuclear Research)
- Published
- 2026-10-05
- DOI
- https://doi.org/10.5281/zenodo.23149259
- Primary Topic
- Quantum Mechanics and Applications
- Type
- preprint