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Field
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performance, vessel resistance and propulsion using CFD Optimize designs for properller dynamic environmental conditions (e.g., waves, tides, currents). Finite Element and Structural Modeling: Develop and
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conditions (e.g., waves, tides, currents). 2. Finite Element and Structural Modeling: • Develop and implement finite element models to evaluate structural integrity under load conditions. • Perform stress
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heat addition. Evaporation and condensation of volatile fluids, chemical degradation analysis, fluid property analysis under extreme conditions. Tribology analysis via experiments and simulations
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/ or neurotechnologies. The goal is to contribute broadly to research on applications of AI in medicine, and in particular to the development and validation of novel computational language models
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) that is used in the Norwegian Earth System Model (NorESM). In the project, the CLM model will be using the FATES (Functionally-Assembled Terrestrial Ecosystem Simulator) terrestrial ecosystem model and the
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the further development and application of IQCELL 2.0, our lab’s next-generation GRN-cell simulation platform, to model spatial gene expression, cell-cell communication, and T-cell developmental
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. Experimental work could include the design, construction, and testing of prototype storage systems, while simulation efforts may focus on thermal modelling, system optimization, and safety analysis
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development and application of IQCELL 2.0, our lab’s next-generation GRN-cell simulation platform, to model spatial gene expression, cell-cell communication, and T-cell developmental repertoires within
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Stig Brøndbo 4th August 2025 Languages English Norsk Bokmål English English Faculty of Engineering Science and Technology PhD Fellow in signal processing and modelling in the seafood industry Apply
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mitochondrial regulation of cardiovascular metabolism, with a focus on nutrient flux, redox balance, and metabolic signaling under physiological and pathological conditions. We employ cutting-edge approaches