5 dynamic-structure PhD positions at NTNU Norwegian University of Science and Technology in Norway
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techniques, including (TD)DFT and post-DFT analyses, alongside spin dynamics simulations. The primary goal is to investigate how collective excitations and topological effects influence quantum transport and
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set of use cases: Logistics, shipping and business transactions; Ship design and construction; Voyage planning and optimization; Condition monitoring and maintenance; Crew training; Maritime traffic and
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inertial navigation systems. Personal characteristics To successfully complete a doctoral degree (PhD), it is important that you are able to: Work independently and in a structured way, set goals and make
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sequence analysis. Familiarity with metagenomic library construction or screening methods. Candidates with experience in microfluidics will be considered an advantage. Ability to work independently and
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candidate will become part of a dynamic and internationally connected research environment at the Department of Engineering Cybernetics, renowned for its leading expertise in optimization, control, and