Primary publications and source evidence enter the Registry.
Find papers →The Registry graph
Trace the reviewed chain from research evidence to Claims, researchers, Limits, and the frontier changes that follow. The live visual currently shows accepted Limit dependencies; the surrounding index makes the other relationship layers discoverable.
Five connected layers
Primary publications and source evidence enter the Registry.
Find papers →Specific, reviewable assertions connect evidence to a Limit.
Explore Claims →Contributors are attributed to the claims they author, formalize, or reproduce.
How attribution works →Canonical questions collect competing bounds under one specification.
Browse Limits →Accepted frontier changes become timestamped, shareable events.
See breakthroughs →Crawlable relationship index
100 metres world record — World Athletics → LR-100M-MEN — Men's 100 meters sprint (CLM-100M-MEN)
100 metres world record — World Athletics → LR-100M-WOMEN — Women's 100 meters sprint (CLM-100M-WOMEN)
100 metres world record — World Athletics → LR-HIGH-JUMP-MEN — Men's high jump (CLM-HIGH-JUMP-MEN)
100 metres world record — World Athletics → LR-LONG-JUMP-MEN — Men's long jump (CLM-LONG-JUMP-MEN)
A Markovian Decision Process → LR-003634 — Discounted Bellman optimality contraction (CLM-AI-003634)
A Markovian Decision Process → LR-003635 — Discounted value-iteration error decay (CLM-AI-003635)
A Mathematical Theory of Communication → LR-003200 — Discrete memoryless channel capacity (CLM-INFO-003200)
A Mathematical Theory of Communication → LR-003204 — Band-limited Gaussian channel capacity (CLM-INFO-003204)
A Mathematical Theory of Communication → LR-003208 — Shannon lossless source-coding entropy floor (CLM-INFO-003208)
A comparison of signalling alphabets → LR-003220 — Gilbert–Varshamov achievable coding bound (CLM-INFO-003220)
A decision-theoretic generalization of on-line learning and an application to boosting → LR-003608 — Weighted-majority expert regret bound (CLM-AI-003608)
A theory of the learnable → LR-003603 — Finite-class consistent PAC sample bound (CLM-AI-003603)
A theory of the learnable → LR-003604 — Finite-class agnostic uniform-convergence bound (CLM-AI-003604)
A universal algorithm for sequential data compression → LR-003218 — Lempel–Ziv asymptotic compression limit (CLM-INFO-003218)
Acetaminophen: Drug Safety Communication → LR-004217 — Maximum recommended adult acetaminophen dose (CLM-SCI-004217)
Amazon S3 — Data Durability and Availability → LR-CLOUD-STORAGE-DURABILITY — Cloud object storage durability (vendor-published target) (CLM-CLOUD-STORAGE-DURABILITY)
Amprius Technologies — investor relations → LR-BATTERY-ENERGY-DENSITY — Battery specific energy density (commercial cell) (CLM-BATTERY-ENERGY-DENSITY)
An Introduction to Modern Astrophysics → LR-003503 — Eddington luminosity (CLM-ASTRO-003503)
An Introduction to Modern Astrophysics → LR-003510 — Jeans mass instability threshold (CLM-ASTRO-003510)
An Introduction to Modern Astrophysics → LR-003511 — Fluid Roche limit (CLM-ASTRO-003511)
An Introduction to Modern Astrophysics → LR-003512 — Hill-sphere radius approximation (CLM-ASTRO-003512)
Antenna Theory: Analysis and Design, fourth edition → LR-003417 — Uniform linear-aperture half-power beamwidth approximation (CLM-SIGNAL-003417)
Arrhenius equation → LR-004108 — Arrhenius temperature-dependence model (CLM-CHEM-004108)
ArtNews — Most expensive artworks ever sold at auction → LR-AUCTION-PRICE-RECORD — Highest price for an artwork at public auction (CLM-AUCTION-PRICE-RECORD)
Attention Is All You Need → LR-003620 — Dense self-attention score computation complexity (CLM-AI-003620)
Attention Is All You Need → LR-003621 — Materialized dense-attention score memory (CLM-AI-003621)
Attention Is All You Need → LR-003626 — Autoregressive cached-attention decoding work (CLM-AI-003626)
Balian–Low theorem → LR-003408 — Balian–Low localization limitation (CLM-SIGNAL-003408)
Beer–Lambert law → LR-004104 — Beer–Lambert absorbance relation (CLM-CHEM-004104)
Beiträge zur Theorie des Mikroskops und der mikroskopischen Wahrnehmung → LR-003416 — Abbe diffraction resolution criterion (CLM-SIGNAL-003416)
Black hole explosions? → LR-003509 — Ideal Schwarzschild black-hole evaporation lifetime (CLM-ASTRO-003509)
Brewer's conjecture and the feasibility of consistent, available, partition-tolerant web services → LR-CAP-THEOREM — CAP theorem — distributed system consistency limit (CLM-CAP-THEOREM)
CODATA Recommended Values of the Fundamental Physical Constants: 2022 → LR-001000 — alpha particle-electron mass ratio (CLM-CODATA-0001)
CODATA Recommended Values of the Fundamental Physical Constants: 2022 → LR-001001 — alpha particle mass (CLM-CODATA-0002)
CODATA Recommended Values of the Fundamental Physical Constants: 2022 → LR-001002 — alpha particle mass energy equivalent (CLM-CODATA-0003)
CODATA Recommended Values of the Fundamental Physical Constants: 2022 → LR-001003 — alpha particle mass energy equivalent in MeV (CLM-CODATA-0004)
CODATA Recommended Values of the Fundamental Physical Constants: 2022 → LR-001004 — alpha particle mass in u (CLM-CODATA-0005)
CODATA Recommended Values of the Fundamental Physical Constants: 2022 → LR-001005 — alpha particle molar mass (CLM-CODATA-0006)
CODATA Recommended Values of the Fundamental Physical Constants: 2022 → LR-001006 — alpha particle-proton mass ratio (CLM-CODATA-0007)
CODATA Recommended Values of the Fundamental Physical Constants: 2022 → LR-001007 — alpha particle relative atomic mass (CLM-CODATA-0008)
CODATA Recommended Values of the Fundamental Physical Constants: 2022 → LR-001008 — alpha particle rms charge radius (CLM-CODATA-0009)
CODATA Recommended Values of the Fundamental Physical Constants: 2022 → LR-001009 — Angstrom star (CLM-CODATA-0010)
CODATA Recommended Values of the Fundamental Physical Constants: 2022 → LR-001010 — atomic mass constant (CLM-CODATA-0011)
CODATA Recommended Values of the Fundamental Physical Constants: 2022 → LR-001011 — atomic mass constant energy equivalent (CLM-CODATA-0012)
CODATA Recommended Values of the Fundamental Physical Constants: 2022 → LR-001012 — atomic mass constant energy equivalent in MeV (CLM-CODATA-0013)
CODATA Recommended Values of the Fundamental Physical Constants: 2022 → LR-001013 — atomic mass unit-electron volt relationship (CLM-CODATA-0014)
CODATA Recommended Values of the Fundamental Physical Constants: 2022 → LR-001014 — atomic mass unit-hartree relationship (CLM-CODATA-0015)
CODATA Recommended Values of the Fundamental Physical Constants: 2022 → LR-001015 — atomic mass unit-hertz relationship (CLM-CODATA-0016)
CODATA Recommended Values of the Fundamental Physical Constants: 2022 → LR-001016 — atomic mass unit-inverse meter relationship (CLM-CODATA-0017)
CODATA Recommended Values of the Fundamental Physical Constants: 2022 → LR-001017 — atomic mass unit-joule relationship (CLM-CODATA-0018)
Eric Brewer → LR-CAP-THEOREM — CAP theorem — distributed system consistency limit (CLM-CAP-THEOREM)
Florence Griffith-Joyner → LR-100M-WOMEN — Women's 100 meters sprint (CLM-100M-WOMEN)
Javier Sotomayor → LR-HIGH-JUMP-MEN — Men's high jump (CLM-HIGH-JUMP-MEN)
Ken Franklin → LR-PEREGRINE-FALCON-DIVE — Peregrine falcon dive speed (CLM-PEREGRINE-FALCON-DIVE)
Mike Powell → LR-LONG-JUMP-MEN — Men's long jump (CLM-LONG-JUMP-MEN)
Nancy Lynch → LR-CAP-THEOREM — CAP theorem — distributed system consistency limit (CLM-CAP-THEOREM)
Ruth Chepngetich → LR-MARATHON-WOMEN-MIXED — Women's marathon (mixed-sex race) (CLM-MARATHON-WOMEN-MIXED)
Sabastian Sawe → LR-MARATHON-MEN — Men's marathon (CLM-MARATHON-MEN)
Seth Gilbert → LR-CAP-THEOREM — CAP theorem — distributed system consistency limit (CLM-CAP-THEOREM)
Tigst Assefa → LR-MARATHON-WOMEN-ONLY — Women's marathon (women-only race) (CLM-MARATHON-WOMEN-ONLY)
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Victor Vescovo → LR-DEEPEST-CREWED-DIVE — Deepest dive by a crewed pressure vessel (CLM-DEEPEST-CREWED-DIVE)