9 integrated-circuits PhD positions at NTNU Norwegian University of Science and Technology
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generation. AI-based performance assessment in early design, integrating rapid analysis tools, multi-criteria performance estimation, and surrogate modeling. Human–AI collaboration in design, including agent
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the broader framework of Embodied AI. The goal is to integrate physical models with deep learning to create interpretable, data-driven observers that enable physically grounded perception and control for robust
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an Integrated PhD study plan[1] You must have some relevant skills and competencies in systems analysis, optimization and/or operations research You must have a strong academic performance from your previous
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components of offshore wind turbines integrated with advanced data processing system and decision support where system properties are identified and monitored in near real time scenarios. Operational modal
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excellent communication skills. The successful candidate demonstrates a structured, goal-oriented approach, a willingness to work under pressure, and is a positive individual with integrity and solid work
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between Computer Science and Information Systems. The existing installed base of offshore energy systems on the Norwegian Continental Shelf is increasingly integrated with the onshore electric grid systems
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clearance to the seabed or sea surface can strongly affect performance, structural integrity, and fatigue life. These effects vary with water depth and turbine concept. This PhD project will investigate how
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of integration and contextualisation of content, trust, and ultimately, how humans work together with AI to synergistically create new content. Duties of the position The candidate will be a member of the Software
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the literature and conduct the needed literature review work, Collect requirements from the stakeholders, Integrating the extracted requirements into services, Prototyping the necessary interfaces/software, Plan