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Republic. We focus on the development and application of methods of analysis and modelling of real-world complex networked systems, with particular interest in the structure and dynamics of human brain function
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application of methods of analysis and modelling of real-world complex networked systems, with particular interest in the structure and dynamics of human brain function. Our main research areas are: Brain
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: Archeometallurgical analyses SEM-EDS microscopy and chemical composition analysis of iron artifacts, slags, and ores GIS spatial analysis, statistical analysis, and network analysis of iron production Other
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analysis of complex biological systems. Collaborate with core facilities and international partners to co-develop AI-enabled research workflow and instrumentation. Work closely with leading industry partners
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: Design and optimise magnetron sputtering processes for complex, multicomponent thin films. Independently carry out thin film deposition experiments. Perform advanced materials characterisation, analyse
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and chemical composition analysis of iron artifacts, slags, and ores GIS spatial analysis, statistical analysis, and network analysis of iron production Other Participation in ensuring operational and
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CAS will provide the necessary expertise in the analysis of complex data, including multimodal neuroimaging measurements, the use of information theory, nonlinear dynamic systems, network theory
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remain disproportionately understudied, leaving a critical knowledge gap in our understanding of complex pollination networks. This project aims to bridge this global knowledge gap by developing and
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of plants and conservation biology, and (vi) landscape vegetation history including Quaternary paleoecology. Emphasis is on the use of modern methods, data analysis, international collaboration, active
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the occupational risks faced by inhabitants of the Roman Empire influenced their choice of preferred cults. The main methods used in the project include spatial analysis, predictive modelling, statistics, and the