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landscapes, environmental change, and spatial justice in the Arctic. The successful applicant will become part of an interdisciplinary research team combining geography, environmental humanities, Indigenous
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along many kilometres of fibre with down to metre-scale spatial resolution – a technique coined Distributed Acoustic Sensing (DAS). The long-term ambition is to enable high-resolution, real-time warning
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, functional, spatial, and temporal aspects of engineering information. The research will investigate how such integrated representations can support consistency checking, automated reasoning, and the synthesis
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(archaeology and archaeobotany) and Charles University Prague (spatial modelling). The research outcomes will contribute to resilience and transformation in the Middle-high latitudes of Europe and operationalize
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storm events. Martian aurora, investigating the spatial and temporal variability of auro-ral emissions using multispectral imaging and spectroscopic data from the Perse-verance rover (SuperCam, Mastcam-Z
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remote, augmented and virtual spaces. We work on overcoming the challenges of limited temporal and spatial accuracy of such remote interactions. We pay particular attention to the exploration of potential
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and Mars Express alongside energetic particle and plasma measurements to characterise the atmospheric response to solar storm events. Martian aurora, investigating the spatial and temporal variability
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of limited temporal and spatial accuracy of such remote interactions. We pay particular attention to the exploration of potential and limitations arising from the use of AI-based methods in predictive feedback
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collaborators both in the University of Oslo, and outside (https://www.mn.uio.no/geo/english/research/projects/dynamice/index.html ). About the DYNAMICE project: Ice and olivine, the main building crystals