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- Fondazione Bruno Kessler
- NTNU - Norwegian University of Science and Technology
- ETH Zürich
- Eindhoven University of Technology (TU/e)
- Monash University
- NTNU Norwegian University of Science and Technology
- The University of Newcastle
- University of Vienna
- Blekinge Institute of Technology
- CNRS
- Durham University
- Empa
- Forschungszentrum Jülich
- KU LEUVEN
- Norwegian Institute of Bioeconomy Research
- Technical University Of Denmark
- Technical University of Denmark
- UNIVERSITY OF VIENNA
- University of Copenhagen
- University of Nottingham
- University of Southern Denmark (SDU)
- Wageningen University & Research
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Field
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, cloud formation, and heat transport in water world atmospheres. Interpret observations of water worlds by comparing atmospheric simulations with measured spectra. Assess the climatic conditions and
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largely by the rapid expansion of artificial intelligence (AI), cloud computing, and high-performance data processing applications. As AI models continue to increase in size and computational complexity
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is related to clouds, radiation, and atmospheric circulation. Climate models are at the core of our research, in particular models that simulate global weather and climate at kilometer-scale resolution
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related to clouds, radiation, and atmospheric circulation. Climate models are at the core of our research, in particular models that simulate global weather and climate at kilometer-scale resolution. We
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, all of our work is related to clouds, radiation, and atmospheric circulation. Climate models are at the core of our research, in particular models that simulate global weather and climate at kilometer
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a strong background in artificial intelligence and 3D computer vision, with solid programming skills and an interest in 3D data processing (e.g. point clouds and neural scene representations), along
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in galaxies: how gas and dust form molecular clouds, how stars are born from these environments, and how stellar evolution and feedback return material back to the interstellar medium. Stars are born
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Zurich. The four-year project, funded by the Swiss National Science Foundation (SNSF), will investigate the in-cloud scavenging processes of plastic aerosol particles through laboratory experiments
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underlying digital dependencies unaddressed. Even with clear legal frameworks, the dependencies that Norwegian organizations develop on global platform companies, cloud providers, and proprietary software
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, multimodal data interpretation, real-time stream processing, adaptive robot control, trust calibration, and edge-cloud deployment. The expected outcome is an inclusive, interpretable, and sustainable AI-based