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.

2,293 results for "type 1 diabetes" — page 35 of 115

ZH_4_11 Verified Archaeoastronomy

ZH_4_11 — Astronomical Mythology: Why Stars Were Named and Storied

Every known human culture has projected stories, characters, and meaning onto the stars — transforming patterns of light into mythological landscapes inhabited by gods, heroes, animals, and cosmic forces. Astronomical my

star myths constellation mythology catasterism Orion Pleiades Ursa Major
ZH_4_10 Verified Archaeoastronomy

ZH_4_10 — Sirius in World Cultures: Rising Star and Calendar Anchor

Sirius (α Canis Majoris) is the brightest star in the night sky (apparent magnitude −1.46) — and has been one of the most culturally significant stars in human history. Its pre-dawn heliacal rising (the first day it beco

Sirius Sothic cycle heliacal rising Dog Star Sirius B Dogon
ZH_3_16 Verified Archaeoastronomy

ZH_3_16 — Polynesian Star Compass: Celestial Navigation of the Pacific

The Polynesian star compass represents one of humanity's most sophisticated non-instrument navigation systems — enabling deliberate, repeatable voyages across thousands of miles of open Pacific Ocean centuries before Eur

Polynesian navigation star compass Mau Piailug wayfinding Hōkūleʻa Polynesian Voyaging Society
ZH_3_17 Credible Archaeoastronomy

ZH_3_17 — Amazonian Astronomical Traditions

Amazonian indigenous astronomical traditions represent some of the least-documented but most sophisticated non-Western star knowledge systems, integrating stellar observation with ecological management, seasonal agricult

Amazonian-astronomy ethnoastronomy Desana Barasana dark-cloud-constellations Pleiades-calendar
ZH_3_19 Credible Archaeoastronomy

ZH_3_19 — Inca Astronomy and Ceque System

Inca astronomy represents one of the most sophisticated indigenous astronomical traditions of the Americas, deeply embedded in the spatial, ritual, and agricultural organization of the Tawantinsuyu (Inca Empire, ~1438–15

inca-astronomy ceque-system cusco dark-cloud-constellations milky-way pleiades
ZH_3_10 Verified Archaeoastronomy

ZH_3_10 — North American Mound Builders and Celestial Alignments

The mound-building cultures of eastern North America — spanning from Poverty Point (~1700 BCE) through the Adena (~800–100 BCE), Hopewell (~100 BCE–500 CE), Fort Ancient (~1000–1650 CE), and Mississippian (~800–1500 CE)

Cahokia mound builders Woodhenge Newark Earthworks Poverty Point Hopewell
ZH_3_11 Credible Archaeoastronomy

ZH_3_11 — Arctic and Subarctic Astronomy: Inuit, Sámi, Siberian

The astronomy of Arctic and subarctic peoples — including the Inuit (across Canada, Alaska, and Greenland), Sámi (Fennoscandia), and Siberian cultures (Chukchi, Evenki, Yakut, and others) — represents adaptation to one o

Inuit astronomy Sámi Siberian Arctic subarctic polar night
ZH_3_12 Credible Archaeoastronomy

ZH_3_12 — South American Archaeoastronomy Beyond the Inca

While the Inca astronomical tradition (the ceque system, the Intihuatana, and the dark-cloud constellations of the Milky Way) is the most thoroughly studied in South America, numerous pre-Inca and non-Inca civilizations

South American astronomy Nazca Chimú Muisca Tiwanaku Chavín
ZH_3_01 Verified Archaeoastronomy

ZH_3_01 — Maya Astronomical Science: Venus Tables, Eclipse Cycles

The ancient Maya (c. 2000 BCE–1500 CE, with the Classic period c. 250–900 CE) developed one of the most sophisticated astronomical traditions of the pre-modern world — rivaling and in some respects exceeding Babylonian m

Maya astronomy Venus table Dresden Codex eclipse table tzolkin haab
ZH_3_15 Credible Archaeoastronomy

ZH_3_15 — Norse Astronomy: Sunstones, Aurvandil's Toe, and Viking Celestial Navigation

The Norse/Viking world (c. 800–1100 CE) developed a distinctive astronomical culture shaped by extreme northern latitudes — long summer days with no true darkness, short winter days with extended night, the aurora boreal

Norse astronomy Viking navigation sunstone Iceland spar calcite Aurvandil
ZH_3_18 Credible Archaeoastronomy

ZH_3_18 — Polynesian Star Navigation and Wayfinding

Polynesian star navigation is the non-instrument celestial wayfinding system that enabled the colonization of the Polynesian Triangle — the vast oceanic region bounded by Hawaiʻi, Rapa Nui (Easter Island), and Aotearoa (

polynesian-navigation celestial-navigation wayfinding star-compass oceanic-voyaging hokulea
ZH_3_13 Verified Archaeoastronomy

ZH_3_13 — Women in Astronomy: Hypatia, Caroline Herschel, Henrietta Leavitt

Women have contributed to astronomy from antiquity to the present — often against formidable institutional barriers, many of which persisted well into the 20th century. Hypatia of Alexandria (~355–415 CE) was a renowned

women in astronomy Hypatia Caroline Herschel Henrietta Leavitt period-luminosity Harvard Computers
ZH_3_21 Verified Archaeoastronomy

ZH_3_21 — Chankillo Solar Observatory

Chankillo (also spelled Chanquillo) — a monumental archaeological complex in the Casma-Sechín Valley of coastal Peru, approximately 380 km north of Lima — contains the oldest known solar observatory in the Americas and o

Chankillo Thirteen Towers solar observatory Peru archaeoastronomy Casma Valley
ZH_3_14 Credible Archaeoastronomy

ZH_3_14 — Nighttime Navigation Without Instruments: Stars, Moon, and Memory

For most of human history, navigators crossing deserts, oceans, and arctic wastes found their way using the stars, the Moon, the Sun's position, and memory — without magnetic compasses, chronometers, or sextants. Non-ins

celestial navigation star navigation non-instrumental Polynesian Arab Viking
ZH_5_17 Credible Archaeoastronomy

ZH_5_17 — Ancient Variable Star Observations (Algol)

Algol (Beta Persei, the "Demon Star") — a second-magnitude eclipsing binary star in the constellation Perseus that dims dramatically every 2.867 days as its fainter companion transits the primary star — may have been rec

Algol variable star eclipsing binary Beta Persei ancient observation Cairo Calendar
ZH_5_15 Credible Archaeoastronomy

ZH_5_15 — Astronomical Symbolism: Stars, Crescents, and Suns in Heraldry and Currency

Astronomical symbols — stars, crescents, and suns — are among the most universal and enduring elements in human visual culture, appearing on the flags of over 70 nations, on coinage from the earliest electrum staters of

astronomical symbolism crescent star sun heraldry vexillology
ZH_5_12 Verified Archaeoastronomy

ZH_5_12 — Citizen Astronomy: Variable Star Observers to Exoplanet Hunters

Astronomy is one of the very few sciences where non-professional observers — amateurs, hobbyists, and citizen scientists — continue to make significant, publishable contributions to research alongside professionals. This

citizen science amateur astronomy AAVSO variable stars exoplanet Galaxy Zoo
ZH_5_21 Verified Archaeoastronomy

ZH_5_21 — Precession of the Equinoxes: The Great Year and Ancient Awareness

The precession of the equinoxes — the slow westward drift of the vernal equinox point along the ecliptic, completing a full cycle in approximately 25,772 years (the "Great Year" or "Platonic Year") — is the longest astro

precession of equinoxes axial precession great year Hipparchus zodiacal ages pole star
ZH_5_18 Verified Archaeoastronomy

ZH_5_18 — Enuma Anu Enlil: Babylonian Celestial Omen Series and Astral Science

The Enuma Anu Enlil ("When Anu and Enlil...") is the most extensive celestial omen series from ancient Mesopotamia — comprising approximately 70 tablets containing some 7,000 omen entries. The series was compiled during

enuma anu enlil babylonian astronomy celestial omens omen series astral divination mesopotamian astrology
ZH_5_16 Verified Archaeoastronomy

ZH_5_16 — Eclipse Prediction and the Saros Cycle

The Saros cycle — a period of approximately 6,585.3 days (18 years, 11 days, 8 hours) after which the Sun, Moon, and lunar nodes return to nearly identical relative positions — has been the primary tool for eclipse predi

Saros-cycle eclipse-prediction Babylonian-astronomy Thales-eclipse lunar-nodes eclipse-periodicity