RESEARCH BASE
Search 3,721 documents across 34 fields — every claim tier-rated by evidence
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.
233 results for "Inca astronomy" — page 2 of 12
ZH_5_23 — Ancestral Puebloan Archaeoastronomy: Celestial Alignments in the American Southwest
The Ancestral Puebloan civilization (c. 100–1300 CE) of the American Southwest developed one of the most sophisticated archaeoastronomical traditions outside the Old World. Chaco Canyon (New Mexico), the cultural center
ZH_5_03 — Modern Archaeoastronomy: GIS, LiDAR, and Digital Methods
Modern archaeoastronomy has been transformed by the adoption of Geographic Information Systems (GIS), Light Detection and Ranging (LiDAR), digital elevation models (DEM), planetarium software (Stellarium, TheSkyX), photo
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
ZH_2_17 — Islamic Golden Age Astronomy: Observation, Innovation, and the Preservation of Knowledge
Islamic astronomy — the astronomical tradition developed in the Islamic world from the 8th through the 15th centuries CE — represents one of the most productive and consequential scientific enterprises in human history,
ZH_2_11 — Southeast Asian Astronomy: Thai, Burmese, Khmer, and Indonesian Traditions
The astronomical traditions of Southeast Asia — Thailand (Siam), Myanmar (Burma), Cambodia (Khmer), Java, Bali, and the wider Malay-Indonesian archipelago — represent a distinctive synthesis of Indian, indigenous, and (i
ZH_2_03 — Islamic Golden Age Astronomy: Observatories and Star Catalogs
Islamic astronomy (c. 750–1500 CE) represents one of the most productive and sophisticated periods in the history of astronomical science — a sustained tradition of observation, mathematical innovation, and critical enga
ZH_2_06 — Astronomy in the Rig Veda and Early Indian Texts
The Rig Veda — the oldest of the four Vedas and among the oldest religious texts still in continuous use (~1500–1200 BCE, though dating is debated) — contains hymns, references, and cosmological imagery that reflect the
ZH_2_12 — Agricultural Astronomy: Star-Based Planting and Harvest Calendars
Before modern calendars, weather services, and agricultural extension offices, farming communities worldwide used stellar observations to time their agricultural activities — planting, irrigation, harvesting, and animal
ZH_1_01 — Archaeoastronomy: Discipline, Debates, and Cultural Astronomy
Archaeoastronomy is the interdisciplinary study of how past cultures understood, used, and integrated celestial phenomena — the motions of the sun, moon, planets, and stars — into their architecture, ritual practices, ag
ZH_1_13 — Bronze Age Astronomy: Alignments, Calendars, and Knowledge 2000–1000 BCE
The Bronze Age (broadly ~3300–1200 BCE, with regional variation) witnessed a decisive transformation in astronomical knowledge — from the horizon-based, monument-encoded astronomy of the Neolithic to the beginning of sys
ZH_1_14 — Roman Astronomy: Pliny, Manilius, and Imperial Star Observation
Roman civilization, despite its monumental achievements in engineering, law, and governance, made relatively few original contributions to astronomical theory — instead, Rome inherited, compiled, applied, and transmitted
ZH_1_02 — Egyptian Astronomy: Decans, Star Clocks, Pyramid Orientation
Ancient Egypt developed one of the most sophisticated astronomical traditions of the pre-telescopic world, integrating celestial observation into timekeeping, calendar construction, temple orientation, and funerary cosmo
ZH_1_03 — Babylonian MUL.APIN and Mathematical Astronomy
Babylonian astronomy represents the first mathematical science in human history — the first tradition to develop quantitative, predictive models of celestial phenomena based on systematic observation and arithmetic calcu
J_3_15 — Inca Engineering: Roads, Bridges, and Quipu
The Inca Empire (Tawantinsuyu — "Land of the Four Quarters"), at its peak in the late 15th and early 16th centuries CE, was the largest empire in pre-Columbian America — stretching approximately 4,000 km along the wester
Q_2_18 — Neutrino Astronomy: Ghostly Messengers from the Cosmos
Neutrino astronomy — the observation of astrophysical sources through their neutrino emission rather than electromagnetic radiation — opened a new window on the universe by detecting particles that can escape from region
G_4_11 — Archaeoastronomy Methods and Systematic Evidence
Archaeoastronomy — the study of how past civilizations understood, observed, and used astronomical phenomena — has matured from a field plagued by speculative alignment claims into a rigorous interdisciplinary discipline
ZA_3_16 — Neutrino Astronomy: Ghost Particles as Cosmic Messengers
Neutrino astronomy — the detection of neutrinos from astrophysical sources — opens a fundamentally new window on the universe, observing objects and processes invisible to electromagnetic radiation. Neutrinos are nearly
W_4_01 — Maya Epigraphy, Astronomy, and Calendar Science
The Maya civilization developed one of the most sophisticated writing systems in the pre-Columbian Americas — a mixed logographic-syllabic script that recorded history, astronomy, mythology, and ritual on stone monuments
W_4_11 — Moche and Chimú: Pre-Inca North Coast Civilizations
The Moche (c. 100–700 CE) and Chimú (c. 900–1470 CE) civilizations flourished on the arid north coast of Peru — the desert strip between the Andes and the Pacific where precipitation is negligible but rivers descending f
J_3_02 — Inca Road System and Khipu Communication
The Inca Empire (Tawantinsuyu, c. 1438-1533 CE) administered the largest empire in pre-Columbian America through an extraordinary infrastructure achieved without written language, wheels, or iron tools. The Qhapaq Ñan ro
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