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Department of Archaeology

 
Read more at: Capital economies in ancient Mesopotamia: reconstructing palatial cuisines and agricultural systems at Carchemish, Niniveh, and Dur Kurigalzu

Capital economies in ancient Mesopotamia: reconstructing palatial cuisines and agricultural systems at Carchemish, Niniveh, and Dur Kurigalzu

The Late Bronze Age (LBA) and Early Iron Age (EIA) in southwest Asia saw major socio-political transformations, including the rise and fall of the Hittite, Kassite and Neo-Assyrian empires. Alongside socio-political and economic instability, climatically induced droughts are among the most frequently cited causes for the collapse of these states. However, direct evidence for the impact of droughts on agricultural systems is virtually absent from these periods, rendering hypotheses that see climate change at the heart of the crises hypothetical.


Read more at: FENSCAPES: Archaeology, Natural Heritage and Environmental Change

FENSCAPES: Archaeology, Natural Heritage and Environmental Change

This archaeology-led initiative focuses on the East Anglian Fens, an extraordinary landscape where exceptional preservation of organic artefacts and environmental evidence gives unparalleled insights into the last 5,000 years of communities, resources and habitats.


Read more at: Must Farm Project

Must Farm Project

The Must Farm project is the first landscape scale archaeological investigation of deep Fenland, with its complex geological history.


Read more at: Science @ Tarquinia

Science @ Tarquinia

The project Science @ Tarquinia aims to provide the complementary scientific support for the long-standing study of the ancient Etruscan city of Tarquinia by the University of Milan. This Unesco World Heritage site is well known for its magnificent painted tombs, its city walls, the Temple of Ara Regina and the monumental zone where the University of Milan has worked for over 30 years. The collaborative work (which started in September 2019) includes flotation, micromorphology, AMS dating, isotopic analysis and aDNA.