Status: CANONICAL Paper: 11 — Segmented Spacetime and the Origin of Molecular Zones in Expanding Nebulae
SSZ predicts that expanding nebulae exhibit molecular zone structures that arise from segmentation-dependent scaling of physical processes. The G79.29+0.46 LBV nebula serves as primary test case.
- Temperature inversion in expanding shells explained by segment density gradients
- NH3 velocity profiles consistent with SSZ scaling
- Molecular zone boundaries correlate with regime transitions
| Test | Result |
|---|---|
| NH3 velocity diagnostics | PASS in executed scripts |
| Temperature-equation diagnostics | Exploratory consistency |
| Radial profile | Consistent with SSZ scaling within current data |
| Parsec-conversion mass integration | Warning: outside expected range in current all-tests output |
The current canonical all-tests run reports g79-cygnus-tests as 5/5 PASS, but the verbose output also includes a parsec-conversion warning. Therefore G79 should be presented as an exploratory molecular-zone diagnostic, not as a closed "6/6 predictions confirmed" result.
- Paper 03 (Frequency Framework): Frequency-based observables
- Paper 10 (Curvature Detection): Dynamic frequency comparisons
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