Pith Number
pith:DJMUKFO7
pith:2007:DJMUKFO7JQ43Q5SQVUX7UZPWSF
not attested
not anchored
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refs pending
How can we derive Fourier's Law from quantum mechanics? Exact master equation analysis
arxiv:0711.4599 v1 · 2007-11-28 · cond-mat.mes-hall · cond-mat.stat-mech
Add to your LaTeX paper
\usepackage{pith}
\pithnumber{DJMUKFO7JQ43Q5SQVUX7UZPWSF}
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Record completeness
1
Bitcoin timestamp
2
Internet Archive
3
Author claim
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claim
4
Citations
5
Replications
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Portable graph bundle live · download bundle · merged
state
The bundle contains the canonical record plus signed events. A mirror can host it anywhere and recompute the same
current state with the deterministic merge algorithm.
Cited by
Receipt and verification
| First computed | 2026-05-18T02:16:09.003125Z |
|---|---|
| Builder | pith-number-builder-2026-05-17-v1 |
| Signature | Pith Ed25519
(pith-v1-2026-05) · public key |
| Schema | pith-number/v1.0 |
Canonical hash
1a594515df4c39b87650ad2ffa65f691747cac510ba830ff1fe99b27f079f1bd
Aliases
· · · · ·Agent API
Verify this Pith Number yourself
curl -sH 'Accept: application/ld+json' https://pith.science/pith/DJMUKFO7JQ43Q5SQVUX7UZPWSF \
| jq -c '.canonical_record' \
| python3 -c "import sys,json,hashlib; b=json.dumps(json.loads(sys.stdin.read()), sort_keys=True, separators=(',',':'), ensure_ascii=False).encode(); print(hashlib.sha256(b).hexdigest())"
# expect: 1a594515df4c39b87650ad2ffa65f691747cac510ba830ff1fe99b27f079f1bd
Canonical record JSON
{
"metadata": {
"abstract_canon_sha256": "9cd854490b8218f60945dd86771f942f66b76d8df0bda781506b29b4fbde618f",
"cross_cats_sorted": [
"cond-mat.stat-mech"
],
"license": "",
"primary_cat": "cond-mat.mes-hall",
"submitted_at": "2007-11-28T21:30:37Z",
"title_canon_sha256": "0269f7ac0dd64a67c8bf84d5eb5b39d480aacea629f05b098c9b37d827fcdecc"
},
"schema_version": "1.0",
"source": {
"id": "0711.4599",
"kind": "arxiv",
"version": 1
}
}