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Field
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people who discover them The Opportunity Join an ARC-funded research project developing numerical methods to simulate the flow of dense viscous liquids through a deformable granular mush. The project aims
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. The research will involve developing analytical models, performing large-scale numerical simulations of open quantum systems, investigating decoherence and noise processes, and exploring new architectures and
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to analyze large experimental and clinical datasets, as well as simulate brain molecules, cells, and circuits, to deepen our understanding of brain function. These efforts aim to accelerate the discovery
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in nano-Darcy shale rocks and propped fractures, with analytical and numerical modeling to interpret multiphase transport and evaluate optimal drawdown strategies for improved production. In
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-driven surrogate models for real-time reconstruction and forward simulations. Create numerical algorithms for physics reconstruction using sparse data. Implement assimilation pipelines which integrate
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for anatomical accuracy, numerical stability, and computational efficiency. Develop multiphysics models coupling electromagnetic field simulations, microwave power deposition, tissue perfusion, and bioheat
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skills for programming and numerical simulations. Excellent written and oral English language skills. Meet the formal requirements for admission to USN’s doctoral program and The Faculty of Technology
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Researcher (R1) Positions PhD Positions Application Deadline 30 Sep 2026 - 23:59 (Europe/Brussels) Country Norway Type of Contract Temporary Job Status Full-time Offer Starting Date 1 Dec 2026 Is the job
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. Qualifications The proposed project extensively involves mathematical modelling, computer programming, numerical simulation and experimental investigation of two-phase flows. It requires researchers to have PhD
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activities with research tasks-related collaborators. About work tasks The research will involve theoretical works, the development of customized numerical scripts, and numerical simulations for validation and