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Paper 108F: Neutral-Angular Veto Closure of the Shell-Offset Exchange-Renewal Discriminator From V15 Failure Mode to V16 Perfect Reduced-Support Truth-Table Separation

Authors: Sarnowski, Michael;

Paper 108F: Neutral-Angular Veto Closure of the Shell-Offset Exchange-Renewal Discriminator From V15 Failure Mode to V16 Perfect Reduced-Support Truth-Table Separation

Abstract

This paper closes the specific neutral-angular false-positive leak left by Paper 108E in the reduced Holosphere shell-offset exchange-renewal diagnostic. Paper 108D introduced a qualitative deuteron-diproton discriminator, and Paper 108E showed that the discriminator is scale-stable across L = 16, 24, and 32, enriched under blind geometric-renewal scoring, and decomposable into radial-like and angular-like reduced sectors. However, the strongest Paper 108E classifier, V14, still retained a small neutral-angular leak: it recovered all truth-positive rows, with truth-positive rate 1.000000, but retained false-positive rate 0.027778. The remaining false positives were concentrated in the neutral angular control allowed_nn_W_3_4_minus, which shares angular-like negative-parity structure with the truth-positive allowed_pn_W_3_4_minus branch. Paper 108F tests whether this residual leak can be removed by a label-free neutral-cancellation veto while preserving the full truth-positive recovery of V14. V15 first tests a permissive neutral-angular veto using angular circulation, phase-winding coherence, two-axis closure, radial-angular return, and neutral-cycle cancellation observables. V15 preserves truth-positive rate 1.000000, but increases the false-positive rate to approximately 0.056 across L = 16, 24, and 32. This makes V15 a useful failure-mode diagnostic: it shows that broad angular-like structure is not enough to distinguish the truth-positive angular branch from the neutral angular control. The V15 threshold sweep identifies the corrected neutral-cancellation threshold, ScoreVeto >= 0.002. V16 applies this corrected threshold. Across L = 16, 24, and 32, with eighteen seeds and two replicas, V16 preserves full truth-positive recovery while eliminating the neutral-angular leak. The complete V16 classifier achieves truth-positive rate 1.000000, false-positive rate 0.000000, truth gap 1.000000, precision 1.000000, specificity 1.000000, and accuracy 1.000000 at all three tested support sizes. Each scale gives TP = 15552, FN = 0, FP = 0, and TN = 46656. The result supports the local claim that the radial-plus-angular shell-offset exchange-renewal discriminator can be closed under a corrected neutral-cancellation veto in the declared reduced-support setting. The paper does not derive QCD, calculate the nuclear force, or model the physical deuteron. It closes a specific reduced diagnostic leak and sets up the next question for Paper 108G: whether radial/angular and signed-sector structure can emerge from primitive Holosphere exchange-renewal dynamics rather than being imposed as classifier geometry.

Keywords

Holosphere theory; Paper 108F; shell-offset exchange-renewal; neutral-angular veto; neutral-cycle cancellation; deuteron-diproton discriminator; radial sector; angular sector; signed-sector structure; reduced-support diagnostic; cuboctahedral shells; residual binding proxy; truth-table selectivity; label-free scoring; V15; V16; neutral angular leak; classifier closure; Paper 108G.

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selected citations
These citations are derived from selected sources.
This is an alternative to the "Influence" indicator, which also reflects the overall/total impact of an article in the research community at large, based on the underlying citation network (diachronically).
BIP!Citations provided by BIP!
popularity
This indicator reflects the "current" impact/attention (the "hype") of an article in the research community at large, based on the underlying citation network.
BIP!Popularity provided by BIP!
influence
This indicator reflects the overall/total impact of an article in the research community at large, based on the underlying citation network (diachronically).
BIP!Influence provided by BIP!
impulse
This indicator reflects the initial momentum of an article directly after its publication, based on the underlying citation network.
BIP!Impulse provided by BIP!
0
Average
Average
Average