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narratives through participatory research methods and stakeholder engagement. Apply spatial modelling tools (e.g., GIS) alongside AI-based techniques to generate risk and vulnerability maps. Analyze and
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, natural resources management, and model-based learning and communication. The group makes use of a variety of tools and techniques: stakeholder mapping, governance analysis, participatory modeling, causal
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. Collect, preprocess, and synthesize geotechnical data from diverse sources, including underground mining case studies, drill logs, structural mapping, and cavity monitoring (CMS) records. Develop and train
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prospective life cycle assessment and techno-economic analysis of selected biosynthesis routes. Contribute to mapping of societal expectations and socio-economic implications of technologies, including
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Technology, (NTNU), University of Oslo, Oslo School of Architecture and Design, Royal Norwegian Naval Academy, Norwegian Mapping Authority, MET and SINTEF Nordvest. There are about 30 user partners from
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impact. Developing mining waste into products is complicated by diffuse and partially counterproductive technical, legal and economic factors. Hence, it is important to map the relevant framework (the sum