Problem packetResearch packetR1791
Dated status and exact unresolved remainder
Link to a section
The record cites sources for its explanation.
Recorded status: reported
Recorded scope: No scope is recorded.
Originating problem: Twin prime conjecture
Authored record and scope
- Authored title
- Dated status and exact unresolved remainder
- Record type
- claim
- Stored status
- reported
- Evidence grade
- sourced
2Authored explanation
The packet's cited sources and equivalent formulations were checked in the dated review recorded below.
Strongest checked result: Polymath8b proves infinitely many intervals of length 246 contain two primes. This does not show any fixed gap, including 2, occurs infinitely often.
Exact unresolved remainder: Prove infinitely many primes p have p+2 prime, or prove only finitely many do.
Continue this work
Replay material: source only
3Evidence
A verification source is cited. This record has no executable replay attached.
Verification source: michaelnielsen.org ↗, Current records table, m=1
4What was measured
5How it connects
Replaces
- claim
Recorded for
- problem
Cite this record
Cite the original sources separately.
Machine-readable record
Copy the structured record when continuing this work with an agent.
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"title": "Dated status and exact unresolved remainder",
"summary": "Unresolved in this packet after the dated source check. Strongest checked result: Polymath8b proves infinitely many intervals of length 246 contain two primes. This does not show any fixed gap, including 2, occurs infinitely often. Exact unresolved remainder: Prove infinitely many primes p have p+2 prime, or prove only finitely many do.",
"relevance": "For Twin prime conjecture, this successor gives readable dated status prose and the exact remaining research boundary.",
"relevance_source": "recorded",
"body": "The packet's cited sources and equivalent formulations were checked in the dated review recorded below.\n\nStrongest checked result: Polymath8b proves infinitely many intervals of length 246 contain two primes. This does not show any fixed gap, including 2, occurs infinitely often.\n\nExact unresolved remainder: Prove infinitely many primes p have p+2 prime, or prove only finitely many do.",
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"citation": {
"url": "https://michaelnielsen.org/polymath/index.php?title=Bounded_gaps_between_primes",
"locator": "Current records table, m=1"
},
"missing": [
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"formal_statement": null,
"source": {
"url": "https://michaelnielsen.org/polymath/index.php?title=Bounded_gaps_between_primes",
"locator": "Current records table, m=1"
},
"models": [],
"relations": [
{
"slug": "R1168",
"title": "Current status and unresolved remainder",
"object_type": "claim",
"relation": "supersedes",
"direction": "outgoing",
"metadata": {
"reason": "Replaces unreadable status prose with the dated review from 2026-08-01."
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},
{
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"title": "twin prime conjecture",
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}7Provenance
View source, identifiers, and projection details
A statement this project treats as settled at the recorded evidence grade, with the work that backs it.