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circulation of radical content, how algorithms amplify or suppress such content, and how these dynamics can be regulated through policy and governance. The Research Fellow is expected to collaborate with
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after receiving the offer. The position’s field of research The increasing penetration of distributed energy resources, electric vehicles, and flexible loads is making distribution networks more dynamic
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computing models (non-von Neumann architectures) as a Methode for quantifying computational properties based on emergence and complex dynamics in nanomagnet systems. Nanomagnet metamaterials, Artificial Spin
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interdisciplinary collaboration. The PhD project will focus on: Characterizing and understanding the dynamical and structural effects of different peptides on a range of membrane systems Developing strategies
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The position will be attached to the project “SURE-AI” (http://www.sure-ai.no/ ) funded by The Research Council of Norway, and lead by Simula Research Laboratory. The main focus of the research will be
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on sustainability, governance, mobilities, Arctic transformations, and societal change. The successful candidate will become part of a dynamic interdisciplinary environment, including UiT’s Environmental Humanities
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and understanding the dynamical and structural effects of different peptides on a range of membrane systems Developing strategies to formulate and prepare building blocks for stable LNPs through organic
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of behavioural models for dynamic analysis. Particular emphasis will be placed on the development of temporal modelling concepts, knowledge graphs, and formal verification techniques, enabling the automatic
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of the ERC StG project DYNAMICE – Exploring the impact of aniso-tropic viscosity on the interplay between ice and mantle dynamics. The successful candidate will be part of an international team with
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a state-of-the-art single-cylinder optical combustion chamber, the candidate will explore fundamental processes, including: Ignition dynamics and flame propagation Pollutant formation pathways Fuel