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.

2,324 results for "Type Ia supernovae" — page 76 of 117

ZB_5_07 Verified Ecology & Biology

ZB_5_07 — Chronobiology: Biological Clocks and Temporal Ecology

Chronobiology — the study of biological rhythms and their underlying molecular, physiological, and ecological mechanisms — reveals that nearly all living organisms, from cyanobacteria to humans, possess endogenous biolog

chronobiology circadian rhythm biological clock suprachiasmatic nucleus melatonin photoperiodism
ZB_5_29 Verified Ecology & Biology

ZB_5_29 — Biomineralization: Biological Crystal Engineering from Shells to Bones

Biomineralization — the process by which living organisms produce minerals — is one of the most remarkable achievements of biological engineering, responsible for structures ranging from the calcium carbonate shells of m

biomineralization calcium carbonate hydroxyapatite nacre bone mineralization magnetotaxis
ZB_5_28 Verified Ecology & Biology

ZB_5_28 — Photosynthesis: Light Harvesting, Carbon Fixation, and the Bioenergetic Foundation of Life

Photosynthesis — the conversion of light energy into chemical energy by living organisms — is the bioenergetic foundation of virtually all life on Earth, fixing approximately 120 billion tonnes of carbon annually and pro

photosynthesis chlorophyll Calvin cycle light reactions photosystem carbon fixation
ZB_5_17 Verified Ecology & Biology

ZB_5_17 — Constructal Law & Flow Architecture: Why Nature Branches the Way It Does

Most fractal descriptions of nature are descriptive: they observe that rivers branch like blood vessels, blood vessels branch like trees, trees branch like lightning bolts, and lightning bolts branch like river deltas. A

constructal law Adrian Bejan flow architecture branching networks Murray's law river delta
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
ZB_5_10 Verified Ecology & Biology

ZB_5_10 — Disturbance Ecology: Fire, Flood, and Forest Dynamics

Disturbance ecology investigates how natural and anthropogenic perturbations — fire, wind, flood, drought, volcanic eruption, logging, grazing, landslides, and insect outbreaks — influence ecosystem structure, species di

disturbance ecology fire ecology succession intermediate disturbance hypothesis windthrow flood disturbance
ZB_5_12 Verified Ecology & Biology

ZB_5_12 — Wildlife Disease Ecology: Pathogens in Wild Populations

Wildlife disease ecology examines how infectious diseases (caused by viruses, bacteria, fungi, protists, and metazoan parasites) operate within wild animal and plant populations, investigating transmission dynamics, host

wildlife disease epizootic chytrid fungus white-nose syndrome zoonosis spillover
ZB_4_16 Verified Ecology & Biology

ZB_4_16 — Mangrove Ecosystems

Mangroves are a group of approximately 70 species of salt-tolerant trees and shrubs that occupy the intertidal zone of tropical and subtropical coastlines worldwide, forming dense tidal forests that rank among the most p

mangrove blue carbon coastal wetland Rhizophora Avicennia carbon sequestration
ZB_4_04 Verified Ecology & Biology

ZB_4_04 — Flight Evolution

Powered flight has evolved independently at least four times in the history of life — in insects (~350 Ma), pterosaurs (~230 Ma), birds (~150 Ma), and bats (~55 Ma) — making it one of evolution's most spectacular converg

flight evolution powered flight gliding insect wing feathered dinosaur pterosaur
ZB_4_07 Credible Ecology & Biology

ZB_4_07 — Deep-Time Ecology: Ecosystems across Geological History

Deep-time ecology reconstructs the structure, function, and dynamics of ecosystems over geological time — from the earliest microbial mats of the Archean (>3.5 Ga) through the emergence of complex life in the Ediacaran-C

deep-time ecology paleoecology fossil ecosystems Cambrian explosion reef evolution terrestrialization
ZB_4_01 Verified Ecology & Biology

ZB_4_01 — Biogeography and Island Biology

Biogeography — the study of the geographic distribution of organisms — was one of Darwin's and Wallace's most powerful lines of evidence for evolution and remains central to modern biology. Alfred Russel Wallace identifi

biogeography island biogeography Wallace line continental drift dispersal vicariance
ZB_4_02 Verified Ecology & Biology

ZB_4_02 — Extremophiles and Extreme Biology

Extremophiles are organisms that thrive in conditions lethal to most life — extreme heat, cold, acidity, radiation, pressure, salinity, or desiccation. Their discovery has fundamentally expanded understanding of life's b

extremophiles thermophiles halophiles acidophiles psychrophiles radiation resistance
ZB_4_06 Verified Ecology & Biology

ZB_4_06 — Alpine and Arctic Ecology: Life at the Extremes

Alpine and Arctic ecosystems — the treeless biomes occurring above the climatic treeline in mountains (alpine) and above ~60–70°N latitude where mean temperature of the warmest month is <10°C (arctic) — share fundamental

alpine ecology arctic ecology tundra permafrost treeline cryosphere
ZB_4_15 Credible Ecology & Biology

ZB_4_15 — Urban Wildlife Genomics: Rapid Evolution in the Anthropocene City

Cities — covering only ~3% of Earth's land surface but housing >55% of humanity — are emerging as powerful natural laboratories for studying rapid evolution in real time. Urban wildlife genomics investigates how the extr

urban-evolution wildlife-genomics urban-adaptation heat-island pollution-adaptation urban-speciation
ZB_4_13 Verified Ecology & Biology

ZB_4_13 — Historical Ecology: Human-Ecosystem Co-Evolution through Time

Historical ecology investigates how human land use, management, domestication, exploitation, and settlement over centuries to millennia have shaped contemporary ecosystems, landscapes, and biodiversity patterns — reveali

historical ecology shifting baseline land-use history legacy effects paleoecology human impact
ZB_3_14 Verified Ecology & Biology

ZB_3_14 — Kelp Forests and Seagrass Meadows: Underwater Gardens of Productivity

Kelp forests and seagrass meadows are the two major groups of marine macrophyte-dominated ecosystems — structurally complex, highly productive underwater habitats that provide essential services including nursery habitat

kelp forest seagrass macroalgae blue carbon urchin barren trophic cascade
ZB_3_19 Verified Ecology & Biology

ZB_3_19 — Permafrost Methane

Permafrost — permanently frozen ground maintained at or below 0°C for at least two consecutive years — underlies approximately 22% of the Northern Hemisphere land surface (about 23 million km²), primarily across Siberia,

permafrost methane thermokarst clathrate greenhouse gas Arctic warming
ZB_3_20 Verified Ecology & Biology

ZB_3_20 — Kelp Forest Ecology

Kelp forests are underwater ecosystems formed by dense stands of large brown macroalgae (Order Laminariales), predominantly species of Macrocystis (giant kelp, reaching heights of 45–60 meters — among the fastest-growing

kelp forest Macrocystis Laminaria sea urchin trophic cascade otter
ZB_3_04 Verified Ecology & Biology

ZB_3_04 — Ecological Succession

Ecological succession — the process of community change over time following a disturbance or the creation of new habitat — is one of ecology's oldest and most studied concepts. Primary succession occurs on newly exposed

ecological succession primary succession secondary succession climax community pioneer species sere
ZB_3_16 Verified Ecology & Biology

ZB_3_16 — Lichen Biology: Symbiosis, Ecology, and Extremophile Survival

Lichens are stable symbiotic associations between a fungal partner (mycobiont, typically an ascomycete) and one or more photosynthetic partners (photobiont — green algae, usually Trebouxia, and/or cyanobacteria, usually

lichen lichenology symbiosis mutualism mycobiont photobiont