Integrating Ethiopian Indigenous Astronomical Knowledge with Modern Astrophysics: A Framework for Cultural Preservation and Scientific Discovery

Fuente: Zenodo
Guardado en:
Detalles Bibliográficos
Autores principales: Belay Sitotaw Goshu, Muhammad Ridwan
Formato: Recurso digital
Publicado: Zenodo 2026
Materias:
Acceso en línea:
Etiquetas: Agregar Etiqueta
Sin Etiquetas, Sea el primero en etiquetar este registro!
_version_ 1866901682473926656
author Belay Sitotaw Goshu
Muhammad Ridwan
author_facet Belay Sitotaw Goshu
Muhammad Ridwan
contents <p><em><span lang="X-NONE">Ethiopia’s rich ethnoastronomical heritage, particularly the Borana Oromo lunar-stellar calendar and similar systems among Amhara, Tigray, Afar, Somali, Konso, and other groups, integrates celestial observation with seasonal forecasting, pastoral mobility, ritual timing, and social organization (Gadaa cycles). These knowledge systems face accelerating threats from elder attrition, urbanization, modernization, and climate variability. Purpose: This study maps the contemporary distribution, linguistic and narrative structure, scientific validity, educational integration potential, and citizen-science documentation pathways of Ethiopian Indigenous Astronomical Knowledge (EIAK), aiming to provide evidence-based strategies for preservation and application. A mixed-methods design combined quantitative visualization (distribution maps, correlation matrices, time-series validation against modern meteorological records), qualitative semantic and narrative analysis, competency assessment in educational pilots, and participatory citizen-science metrics. Novelty: The work offers the first comprehensive synthesis integrating multi-ethnic holder distributions, narrative keyword networks, rigorous predictive validation (r = 0.889 for rain onset, RMSE = 3.3 days), culturally responsive STEM curriculum frameworks, and scalable citizen-science models for an African indigenous astronomy system. Findings: Knowledge is concentrated in Oromia, SNNPR, and Amhara; oral transmission dominates (64.3%); narratives emphasize time, weather, and navigation; predictive skill is high for rain onset and seasonal transitions; low-cost educational models (Community Elder, Cultural Exchange) achieve highest adoption and competency gains; citizen-science programs engaged >18,000 participants with strong sustainability in community-led formats. EIAK is a scientifically valid, adaptive knowledge system with proven forecasting utility and significant educational value, yet urgently requires safeguarding. Recommendations: Prioritize multi-ethnic documentation, large-scale validation, equitable educational scaling, sustainable citizen science, and policy integration.</span></em></p> <p><strong><em><span lang="EN-GB"> </span></em></strong></p>
format Recurso digital
id zenodo_https___doi_org_10_5281_zenodo_18781428
institution Zenodo
language
publishDate 2026
publisher Zenodo
record_format zenodo
spellingShingle Integrating Ethiopian Indigenous Astronomical Knowledge with Modern Astrophysics: A Framework for Cultural Preservation and Scientific Discovery
Belay Sitotaw Goshu
Muhammad Ridwan
Ethnoastronomy, Borana calendar, indigenous forecasting, STEM integration, citizen science
<p><em><span lang="X-NONE">Ethiopia’s rich ethnoastronomical heritage, particularly the Borana Oromo lunar-stellar calendar and similar systems among Amhara, Tigray, Afar, Somali, Konso, and other groups, integrates celestial observation with seasonal forecasting, pastoral mobility, ritual timing, and social organization (Gadaa cycles). These knowledge systems face accelerating threats from elder attrition, urbanization, modernization, and climate variability. Purpose: This study maps the contemporary distribution, linguistic and narrative structure, scientific validity, educational integration potential, and citizen-science documentation pathways of Ethiopian Indigenous Astronomical Knowledge (EIAK), aiming to provide evidence-based strategies for preservation and application. A mixed-methods design combined quantitative visualization (distribution maps, correlation matrices, time-series validation against modern meteorological records), qualitative semantic and narrative analysis, competency assessment in educational pilots, and participatory citizen-science metrics. Novelty: The work offers the first comprehensive synthesis integrating multi-ethnic holder distributions, narrative keyword networks, rigorous predictive validation (r = 0.889 for rain onset, RMSE = 3.3 days), culturally responsive STEM curriculum frameworks, and scalable citizen-science models for an African indigenous astronomy system. Findings: Knowledge is concentrated in Oromia, SNNPR, and Amhara; oral transmission dominates (64.3%); narratives emphasize time, weather, and navigation; predictive skill is high for rain onset and seasonal transitions; low-cost educational models (Community Elder, Cultural Exchange) achieve highest adoption and competency gains; citizen-science programs engaged >18,000 participants with strong sustainability in community-led formats. EIAK is a scientifically valid, adaptive knowledge system with proven forecasting utility and significant educational value, yet urgently requires safeguarding. Recommendations: Prioritize multi-ethnic documentation, large-scale validation, equitable educational scaling, sustainable citizen science, and policy integration.</span></em></p> <p><strong><em><span lang="EN-GB"> </span></em></strong></p>
title Integrating Ethiopian Indigenous Astronomical Knowledge with Modern Astrophysics: A Framework for Cultural Preservation and Scientific Discovery
topic Ethnoastronomy, Borana calendar, indigenous forecasting, STEM integration, citizen science
url https://doi.org/10.5281/zenodo.18781428