RESEARCH BASE

Search 3,721 documents across 34 fields — every claim tier-rated by evidence

3,721 Documents 34 Sections 43,625 Citations 34,852 Keywords Indexed 4 Evidence Tiers

3,633 are the core, quality-scored corpus (34 lettered sections — see How We Work); the remaining 88 are cross-corpus synthesis documents (68 InterDocs, 12 Connections, 8 Theories) also indexed here.

10 results for "Permian"

E_2_04 Verified Cataclysms & Chronology

E_2_04 — Permian-Triassic Great Dying — The Biggest Mass Extinction

Approximately 252 million years ago, at the boundary between the Permian and Triassic periods, Earth experienced the worst mass extinction in its entire history — an event so devastating it has been called "The Great Dyi

Permian Triassic Great Dying mass extinction Siberian Traps volcanism
ZF_5_13 Verified Oceanography

ZF_5_13 — Coral Paleontology: Fossil Reefs and Ancient Reef Ecosystems

Reef ecosystems have existed for over 3.5 billion years — beginning with Archean microbial stromatolite mounds — making them among the longest-running biological communities on Earth. Yet the organisms that build reefs h

coral paleontology fossil reef reef ecosystem scleractinian rugose coral tabulate coral
E_2_14 Verified Cataclysms & Chronology

E_2_14 — Deccan Traps and Large Igneous Provinces

Large Igneous Provinces (LIPs) are the most voluminous volcanic features on Earth: enormous outpourings of basalt lava and associated intrusions that cover areas of up to millions of square kilometers and release colossa

Deccan Traps large igneous province LIP flood basalt volcanism mass extinction
Verified

INTERDOC_44 — Mass Destruction Events: A Chronological Timeline from Earth's Origin to Present

Earth has experienced at least 20 major destruction events across 4.5 billion years, ranging from planetary-scale mass extinctions that eliminated 75–96% of all species to civilization-ending catastrophes that reset huma

mass extinction impact event supervolcano Younger Dryas Chicxulub Toba
ZB_5_06 Verified Ecology & Biology

ZB_5_06 — Mass Extinction Ecology: Catastrophe, Recovery, and Evolutionary Reset

Mass extinctions — episodes in which >75% of species disappear within a geologically brief interval — have profoundly shaped the history of life on Earth, acting as ecological and evolutionary resets that eliminate domin

mass extinction Big Five Cretaceous-Paleogene Permian-Triassic recovery ecology extinction selectivity
O_2_01 Verified Earth Anomalies

O_2_01 — Volcanism, Supervolcanoes, and Geological Catastrophism

Volcanic eruptions are among the most powerful forces on Earth, capable of altering global climate, triggering mass extinctions, collapsing civilizations, and imprinting themselves on human mythology for millennia. The T

volcano volcanism supervolcano caldera eruption Toba
R_5_20 Verified Biology & Evolution

R_5_20 — Mass Extinction Recovery: Post-Crisis Adaptive Radiation

Life on Earth has survived at least five major mass extinctions — the "Big Five" — each eliminating 75–96% of species. Yet each catastrophe was followed by a remarkable recovery phase in which surviving lineages radiated

mass extinction recovery adaptive radiation end-permian end-cretaceous K-Pg
R_1_11 Verified Biology & Evolution

R_1_11 — Extinction, Recovery, and Adaptive Radiation

The history of life is punctuated by mass extinction events — catastrophic biodiversity losses that eliminate >75% of species in geologically brief intervals — followed by recovery phases and adaptive radiations during w

mass extinction Big Five adaptive radiation recovery background extinction end-Permian
R_1_03 Verified Biology & Evolution

R_1_03 — Mass Extinction Events

Life on Earth has endured at least five catastrophic mass extinctions in 540 million years, each eliminating 60–96% of all species. The "Big Five" are: End-Ordovician (~443 Mya, ~85% species lost), Late Devonian (~372 My

mass extinction Big Five Permian Cretaceous K-Pg Chicxulub
R_1_18 Credible Biology & Evolution

R_1_18 — Mass Extinction Periodicity

The question of whether mass extinctions follow a periodic pattern — recurring at regular intervals driven by astronomical or geological cycles — has been one of the most provocative and contentious hypotheses in paleont

mass extinction periodicity Raup Sepkoski Nemesis galactic plane