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15th June 2025 Languages English English English The Department of Clinical and Molecular Medicine has a vacancy for a Postdoctoral Fellow in artificial intelligence-based image analysis Apply
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understanding of the rock deformation processes that occur before and during earthquakes. The primary mission will be to develop an independent research project related to one of the two main goals of the project
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the project TIME4CO2 TIME4CO2 aims at advancing simulation technology for CO2 storage, capturing dissolution processes and convective mixing, validated against high-resolution complex meter-scale
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technology for CO2 storage, capturing dissolution processes and convective mixing, validated against high-resolution complex meter-scale laboratory experiments in the FluidFlower . The project is an
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of three topics: 1. Combining synthetic aperture radar (SAR) images with probabilistic weather prediction models to view and predict dynamic sea ice properties. 2. Using multi-frequency SAR, coupled with in
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. Programming skills, with experience or willingness to learn Python. Experience with image analysis and/or signal processing techniques. Quality of the master's thesis and the relevance of the master's thesis
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the aquatic environment, focusing on their gills, a mitochondria-rich organ. Employing advanced imaging techniques and next generation sequencing tools, the candidate is expected to study stress-induced
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employees and 43,000 students work to create knowledge for a better world. You can find more information about working at NTNU and the application process here . ... (Video unable to load from YouTube. Accept
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4 PhD Fellows in Deep Learning at Visual Intelligence Research Centre and UiT Machine Learning Group
next generation neural networks for advanced analysis of image and multimodal data. Central research challenges are to develop neural networks that learn more efficiently from limited data
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the project MinMix (Mineralization as a fluid mixing process) funded by the Research Council of Norway. In this project, we will use advanced time-lapse imaging, numerical simulations, and reactive mixing