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Department of Archaeology

 
Read more at: EHSCAN-Exploring Early Holocene Saharan Cultural Adaptation and Social Networks through socio-ecological inferential modelling

EHSCAN-Exploring Early Holocene Saharan Cultural Adaptation and Social Networks through socio-ecological inferential modelling

EHSCAN is a Horizon-MSCA-2022-PF scheme Fellowship Funded by UKRI and hosted by the McDonald Institute for Archaeological Research, University of Cambridge. 


Read more at: Historical East African Archaeology and Theory (HEAAT)

Historical East African Archaeology and Theory (HEAAT)

HEAAT aims to develop a multidisciplinary, theory-focused and data-driven research framework and agenda for East African historical archaeology that will privilege the research of the internal dynamics of African communities and account for the region’s history of complex identities. By investigating a 200-year, high-resolution record of material culture and identity change among the Ilchamus community in Kenya, from c.


Read more at: Mapping Africa’s Endangered Archaeological Sites and Monuments

Mapping Africa’s Endangered Archaeological Sites and Monuments

The Mapping Africa’s Endangered Archaeological Sites and Monuments (MAEASaM) project, funded by Arcadia charitable foundation, is documenting and compiling a trans-national inventory of Africa’s rich archaeological heritage, including many previously unidentified sites and monuments. Particular emphasis is being given to mapping and recording sites under threat, whether from urban growth, conflict, sea-level change or infrastructure development, among other adverse impacts.


Read more at: MedAfrica Project - Archaeological deep history and dynamics of Mediterranean Africa, ca.9600-700 BC

MedAfrica Project - Archaeological deep history and dynamics of Mediterranean Africa, ca.9600-700 BC

This project sets out to produce a comprehensive, problematised synthesis and interpretation of long-term social and economic dynamics along Mediterranean Africa during the Holocene (9600-700 BC).


Read more at: Palaeoanalytics

Palaeoanalytics

Human evolution is a central research area in biology and anthropology and has a history of research going back more than 150 years. For most of that time, evidence has come from digging up fossils and archaeological remains. Research in human evolution has been transformed by the impact of genomics and the development of ancient DNA methodologies, producing new insights into past demography, dispersal and admixture patterns, social behaviour, selection, disease history, and more.


Read more at: PaleoErgo: Exploring Hand-Stone Tool Interactions in Early Hominins

PaleoErgo: Exploring Hand-Stone Tool Interactions in Early Hominins

How did the biomechanics and ergonomics of the human hand influence the use and production of Palaeolithic stone tools? Traditionally, stone tools have been analyzed for their morphological properties and technological characteristics to infer the cognitive and social evolution of early hominins and modern humans. However, the role of musculoskeletal aspects in the effective use of these tools has been largely overlooked, resulting in an incomplete understanding of Palaeolithic technologies.


Read more at: The Cambridge Heritage Science Hub Initiative (CHERISH)

The Cambridge Heritage Science Hub Initiative (CHERISH)

Cambridge is home to world-leading researchers across archaeological science, technical art history and heritage science, based at Department of Archaeology, the Fitzwilliam Museum, and the Hamilton Kerr Institute, among others. There are multiple synergies across these institutions in terms of research methodologies, goals and ambitions in the field of technical and scientific investigation of works of art and archaeological objects.


Read more at: The role of traumatic mortality in late human evolution from an integrated non-invasive bioarchaeological and taphonomic perspective

The role of traumatic mortality in late human evolution from an integrated non-invasive bioarchaeological and taphonomic perspective

Traumatic death affects our daily life, but how did traumatic mortality affect human behaviour from an evolutionary perspective? TRAUMOBITA aims to understand how traumatic mortality among prehistoric humans shaped our behaviour during the Late Pleistocene to the Middle Holocene. Confirming that how we died had an enormous influence on our ancestors and represents an enormous change in how we understand human societies.


Read more at: Transitions in early stone tool technologies: a computer vision and machine learning approach

Transitions in early stone tool technologies: a computer vision and machine learning approach

The transition from Oldowan to Acheulean technologies are hypothesised to be concomitant with advances in cognition and behaviour. However, the nature of these shifts, and their cultural and evolutionary implications are poorly defined and understood. While extensive literature exists on these technologies, significant differences in research methods and traditions make comparative and comprehensive analyses problematic.


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