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March 4, 20262 citationsOpen Access

Riemann–Navier Mapping Protocol v0.3 | Calibration Entry (Audit-first / NO OVERCLAIM)

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HSHisashi SugaNishikyushu University

Key Points

  • The aim is to introduce a robust calibration protocol for selecting coh_min under pre-registered conditions.
  • Introduced a calibration workflow focused on robustness-first criteria.
  • Added a dataset contract (SI-CAL-A) and a calibration log (SI-CAL-LOG).
  • Maintained PASS / FAIL / INCOMPLETE semantics without changes.
  • Ensured strict non-circularity during calibration procedures.
  • No overclaims are made regarding this calibration protocol.
  • Artefacts include detailed documentation and records for auditing purposes.

Abstract

This release is v0. 3 (Calibration Entry) for the Riemann–Navier mapping series. What this is An audit-first calibration protocol for selecting cohₘin under pre-registered locks (Omega/ROI/Bₚostᵢd). Not a proof. Not an equivalence claim. NO OVERCLAIM. What is new in v0. 3 (vs v0. 2 Implementation Entry) Introduces a calibration workflow to choose cohₘin with robustness-first criteria (outcomes should not flip under small perturbations). Adds a dataset contract (SI-CAL-A) and a calibration log (SI-CAL-LOG) as auditable artefacts. Keeps PASS / FAIL / INCOMPLETE semantics unchanged (gate definition remains frozen). Maintains strict non-circularity (no RH zero tables; no known-solution tables; no post-hoc gate fitting). Artefacts (this record) Main (PDF, Nature-style) SI (PDF, Nature-style) INSTALLME (ASCII txt) Figure CAL1 (PNG) Governance Audit-first | NO OVERCLAIM | FACT-BASED Axis: Peace / Non-violence / Dignity Dual-use boundary: NO military / NO surveillance / NO coercion

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Cite This Study

Hisashi Suga (2026) studied this question.

synapsesocial.com/papers/69a7ccc3d48f933b5eed8949https://doi.org/10.5281/zenodo.18830358
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Riemann–Navier Mapping Protocol v0.2 | Implementation Entry2026
  2. 2Riemann–Navier Mapping Protocol v0.3 | Calibration Entry (Audit-first / NO OVERCLAIM)2026
  3. 3Taniyama–Shimura Arc v0.1.1.2 | Concept Lock Riemann–Navier Bridge Protocol (M2-first; Audit-first / NO OVERCLAIM)2026
  4. 4QCRM-Audit v1.0: Pre-registered Experimental Protocol (Audit-First, NO OVERCLAIM)2026
  5. 5Protocol-R v0.1 | Resonance Legacy Model (Audit-first / NO OVERCLAIM)2026