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.

75 results for "benthic foraminifera extinction" — page 2 of 4

ZB_5_05 Verified Ecology & Biology

ZB_5_05 — Extinction Biology and De-Extinction

Extinction — the complete disappearance of a species — is a permanent event that has shaped life's history as profoundly as origination. Background extinction (the normal, continuous loss of species) proceeds at ~0.1–1 s

extinction mass extinction background extinction de-extinction resurrection biology passenger pigeon
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
H_3_06 Verified Suppression & Thesis

H_3_06 — Linguistic Extinction and Lost Knowledge Systems

Of the approximately 7,000 languages spoken today, linguists estimate

linguistic extinction endangered languages UNESCO Atlas
R_5_02 Verified Biology & Evolution

R_5_02 — Megafauna Extinction: Quaternary Losses and the Overkill Debate

Between ~50,000 and 10,000 years ago, Earth lost the majority of its large-bodied animals (megafauna >44 kg) — woolly mammoths, ground sloths, saber-toothed cats, giant wombats, moa, and dozens of other spectacular speci

megafauna extinction Pleistocene extinction Quaternary extinction overkill hypothesis climate change woolly mammoth
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
S_2_10 Verified Future Technology

S_2_10 — Gene Drives: Ecosystem Engineering and Extinction Technology

Gene drives are genetic engineering systems that bias inheritance in sexually reproducing organisms, causing a modified gene to spread through a wild population at rates far exceeding normal Mendelian inheritance (which

gene drive CRISPR selfish gene super-Mendelian inheritance Cas9 population genetics
ZF_4_08 Verified Oceanography

ZF_4_08 — Ocean Acidification Paleoclimate Record

Ocean acidification — the decrease in seawater pH caused by absorption of atmospheric CO₂ — is not only a modern phenomenon but has occurred repeatedly throughout Earth's history, leaving distinctive signals in the geolo

ocean acidification pH paleoclimate PETM Paleocene-Eocene Thermal Maximum carbonate compensation depth
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
E_1_12 Verified Cataclysms & Chronology

E_1_12 — Impact Winter Theory: Nuclear Winter and Chicxulub Parallels

The impact winter hypothesis describes the catastrophic global darkening and cooling that follows a major asteroid or comet impact, caused by the injection of vast quantities of dust, soot, and aerosols into the Earth's

impact winter nuclear winter Chicxulub K-Pg mass extinction asteroid impact
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
G_4_10 Verified Modern Frameworks

G_4_10 — Paleoclimatology Methods: Proxies, Models, and Reconstruction

Paleoclimatology reconstructs Earth's climate history using natural archives—physical, chemical, and biological proxies preserved in geological and biological materials. Speleothems (cave formations) record precipitation

paleoclimatology climate proxies speleothems pollen analysis palynology foraminifera
O_2_11 Verified Earth Anomalies

O_2_11 — Impact Craters: Chicxulub, Vredefort, Sudbury, and Crater Morphology

Impact craters — circular depressions formed by the hypervelocity collision of asteroids, comets, or meteoroids with planetary surfaces — are among the most geologically significant features on Earth and throughout the s

impact crater Chicxulub Vredefort Sudbury Barringer meteorite
R_2_13 Verified Biology & Evolution

R_2_13 — Mammalian Radiation: Post-Cretaceous Diversification

The Cretaceous-Paleogene (K-Pg) mass extinction 66 million years ago — triggered by an asteroid impact and possibly exacerbated by Deccan Traps volcanism — eliminated the non-avian dinosaurs and opened vast ecological ni

mammalian radiation adaptive radiation Cretaceous-Paleogene extinction K-Pg boundary placental mammal marsupial
M_4_09 Verified Forbidden Archaeology

M_4_09 — Younger Dryas Impact and Lost Civilization Hypothesis

The Younger Dryas Impact Hypothesis (YDIH) proposes that a cosmic impact or airburst event approximately 12,800 years ago (12.8 ka BP) triggered the Younger Dryas cold reversal — a ~1,300-year return to near-glacial cond

Younger Dryas impact hypothesis Younger Dryas Boundary nanodiamonds platinum anomaly Clovis
ZH_5_10 Verified Archaeoastronomy

ZH_5_10 — Naked-Eye Observational Limits: Precision, Techniques, and Ancient Achievement

For all but the last ~400 years of human history, every astronomical observation was made with the unaided eye. Understanding the limits and capabilities of naked-eye observation is therefore essential for evaluating anc

naked-eye observation visual acuity atmospheric refraction limiting magnitude angular resolution Tycho Brahe
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
ZF_5_11 Verified Oceanography

ZF_5_11 — Abyssal Plains: Earth's Flattest Terrain and Deep Sedimentation

Abyssal plains — vast, flat expanses of sea floor at depths of 3,000–6,000 meters — are the largest habitat on Earth, covering approximately 54% of the planet's surface (more than all continents combined), yet they remai

abyssal plain deep-sea floor sedimentation pelagic sediment turbidite manganese nodule
ZF_5_15 Verified Oceanography

ZF_5_15 — Submarine Canyons: Underwater Valleys and Turbidity Currents

Submarine canyons are steep-walled, V-shaped valleys incised into the continental shelf and slope that serve as the primary conduits for transporting sediment, organic matter, and pollutants from shallow coastal waters t

submarine canyon turbidity current turbidite continental slope continental shelf deep-sea fan
ZF_4_07 Verified Oceanography

ZF_4_07 — Deep Ocean Mining and Mineral Resources

Deep-sea mining — the extraction of mineral resources from the ocean floor at depths of 200–6,000 m — is one of the most consequential and contested environmental issues in contemporary oceanography. Three primary resour

deep-sea mining polymetallic nodules manganese nodules seafloor massive sulfides cobalt-rich crusts ISA