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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.

2,633 results for "He Jiankui" — page 69 of 132

ZH_4_03 Verified Archaeoastronomy

ZH_4_03 — Star Myths and Constellation Stories Across Cultures

Every human culture that has observed the night sky has organized the visible stars into patterns — constellations, asterisms, and star groups — and woven them into narrative frameworks that encode cosmological beliefs,

constellation star myth asterism Ursa Major Orion Pleiades
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_4_07 Verified Archaeoastronomy

ZH_4_07 — African Astronomical Knowledge: Mursi, Borana, Nabta Playa

Africa — the continent of humanity's origin — has produced some of the world's oldest, most diverse, and most under-documented astronomical traditions. From the possible megalithic calendar circle at Nabta Playa in the e

African astronomy Borana calendar Mursi Nabta Playa stone circle Saharan astronomy
ZH_3_23 Verified Archaeoastronomy

ZH_3_23 — Maya Venus Observations

The ancient Maya developed the most precise pre-telescopic observations of Venus in the world, culminating in the Venus Table (pages 24 and 46–50) of the Dresden Codex — a Late Postclassic manuscript (~13th–14th century

Maya Venus Dresden Codex synodic cycle Venus table heliacal rising
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_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_03 Verified Archaeoastronomy

ZH_3_03 — Aboriginal Australian Astronomy: Seasonal Star Knowledge

Australian Aboriginal peoples developed one of the oldest continuous astronomical traditions on Earth — an integrated system of sky knowledge extending back at least 50,000 years of habitation on the Australian continent

Aboriginal Australian astronomy ethnoastronomy songlines Dreaming Emu in the Sky dark constellation
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_13 Verified Archaeoastronomy

ZH_5_13 — Archaeoastronomical Controversies: Precision Debates and Methodological Limits

Archaeoastronomy — the study of how past cultures understood and used celestial phenomena — has been marked by recurring methodological controversies since its modern founding in the 1960s. The central problem: when an a

archaeoastronomy controversy methodology statistical testing selection bias megalithic yard
ZH_5_01 Verified Archaeoastronomy

ZH_5_01 — Medieval European Astronomy: Monasteries to Universities

Medieval European astronomy (roughly 500–1500 CE) is often dismissed as a "dark age" of astronomical ignorance — sandwiched between Greek–Roman achievement and the Copernican revolution. This view is profoundly misleadin

medieval astronomy computus Bede Sacrobosco astrolabe Alfonsine tables
ZH_5_19 Verified Archaeoastronomy

ZH_5_19 — History of Astrology: Babylonian Origins to Modern Practice

Astrology — the belief that celestial bodies influence terrestrial events and human character — originated in Mesopotamia (c. 2000–1000 BCE), was systematized into natal horoscopy in the Hellenistic period (c. 1st centur

astrology horoscope zodiac babylonian astrology hellenistic astrology natal chart
ZH_5_11 Credible Archaeoastronomy

ZH_5_11 — Solar Eclipse as Political Event: Thales, Omens, and Dynastic Legitimacy

Throughout history, solar eclipses — sudden, dramatic, and seemingly unnatural — have been interpreted not merely as astronomical events but as political signs, divine warnings, and instruments of power. The most famous

solar eclipse political event omen Thales eclipse prediction dynastic legitimacy
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
ZH_5_20 Verified Archaeoastronomy

ZH_5_20 — Maya Calendar Systems: Cycles of Time and Cosmic Order

The Maya calendar system represents one of the most sophisticated timekeeping frameworks developed by any civilization, integrating multiple interlocking cycles to track sacred, civil, agricultural, and cosmic time over

Maya calendar Long Count Tzolkin Haab Calendar Round Maya astronomy
ZH_2_05 Verified Archaeoastronomy

ZH_2_05 — Japanese and Korean Astronomical Traditions

The astronomical traditions of Japan and Korea developed in close dialogue with Chinese astronomy — but were far from mere copies. Both civilizations adapted Chinese astronomical models, instruments, and calendrical meth

Japanese astronomy Korean astronomy Tenmon Cheomseongdae Nihon Shoki guest stars
ZH_2_04 Credible Archaeoastronomy

ZH_2_04 — Cosmic Cycle Doctrines: Great Year, Yuga, Precession Ages

Many civilizations have conceived of cosmic time as cyclical rather than linear — repeating through grand cycles of creation, decline, and renewal that span thousands or millions of years. The most influential of these d

Great Year Platonic Year yuga Kali Yuga Satya Yuga precession
ZH_2_01 Verified Archaeoastronomy

ZH_2_01 — Chinese Astronomical Records: Supernovae, Comets, Guest Stars

China produced the longest continuous tradition of systematic astronomical observation in human history — spanning from the Shang dynasty oracle bone inscriptions (c. 1200 BCE) through the imperial astronomical bureaus o

Chinese astronomy guest star supernova comet Halley's Comet SN 1054
ZH_2_09 Verified Archaeoastronomy

ZH_2_09 — Celestial Cartography: Star Maps and Globes Through History

Celestial cartography — the art and science of mapping the sky — is one of humanity's oldest intellectual undertakings, spanning from Mesopotamian star lists (~1200 BCE), through Hipparchus's star catalog (~129 BCE), the

star map celestial globe star catalog uranography planisphere Hipparchus
ZH_2_18 Credible Archaeoastronomy

ZH_2_18 — Angkor Wat Astronomical Alignments

Angkor Wat — the vast Hindu-Buddhist temple complex in Siem Reap, Cambodia, built by King Suryavarman II between approximately 1113 and 1150 CE — is not only the largest religious monument on Earth (covering 162.6 hectar

Angkor Wat astronomical alignment equinox solstice Khmer Suryavarman II