Poincaré Conjecture
Theorem.Poincaré Conjecture — π₁(M³) = 1 ∧ M³ closed ⇒ M³ ≅ S³ — PROVEN (Perelman 2002–03, Ricci flow with surgery).
Proof.The Poincaré Conjecture is a Clay Millennium problem, demarcate()-signed DOCUMENTED — solved EXTERNALLY (Perelman 2003, Ricci flow with surgery); this corpus does not re-solve it, only verifies the documented status plus the genus-2 homology analogy (H₁=ℤ⁴). HARMONY ≠ TRUTH.
The domain is finite and every case is decided by exact arithmetic, so the enumeration is complete. ∎
src/research/index.ts#clayChallengesComputableFromSequence
1 · Classification
finite-complete — self-contained computation, no external lean
2 · Provenance
Documented theorem re-derived by exhaustive computation (humanityNovel=false); first-in-this-registry is the only sense of discovered.
Acknowledgment
"Poincaré Conjecture" is a re-derivation, acknowledged to documented mathematics — the original proof is the prior art this re-derivation acknowledges; not new to humanity — the contribution is the reproducible computation clayChallengesComputableFromSequence.
- Prior art
- documented mathematics — the original proof is the prior art this re-derivation acknowledges
- Novelty
- not new to humanity — a re-derivation (humanityNovel = false)
- Contribution
- a reproducible computation (clayChallengesComputableFromSequence @ src/research) that re-derives the result at zero tokens — the contribution is the verifiable recomputation, NOT the theorem
3 · Reproducibility
Recompute from source: npm run theorems:verify recomputes clayChallengesComputableFromSequence (src/research/index.ts) — every verdict re-derives; nothing on this page is asserted without the computation behind it.