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of structural response models against measurements. Support the structural dynamics and multi-body modelling efforts in HAWC2. Teach and supervise BSc and MSc student projects and be co-supervisor for PhD
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scientists. Publish research findings in high-impact academic journals and present at international conferences. Teach and supervise BSc and MSc student projects and be co-supervisor for PhD students. Your
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structures and functionalities. The candidate will be in close collaboration with industry to enhance the sensitivity and multiplexing capability of biosensors for detection of various biomarkers for early
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motivated by overcoming challenges as they occur. You will also actively participate in the supervision and mentoring of bachelor, master, and PhD students. You should be a capable communicator in English
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knowledge of interactions between nanoparticles and plant leaves. The ability to communicate within a multidisciplinary research consortium is essential. Experience working in a Challenge Project funded by
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, coordinating with PhD students and collaborators to avoid bottlenecks, and communicating progress clearly. an open and collaborative mindset, which includes a willingness to share expertise and support the
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. The candidate will collaborate closely with team members to develop novel quantum computing algorithms that leverage hybrid detection methods and explore the potential of 3D cluster states for enabling fault
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, glacier speedup, and ice-ocean interaction. Candidates will work with satellite altimetry, velocity datasets, and climate data to quantify ice sheet mass balance and dynamics. Applicants should hold a PhD
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also represents an underutilised carbon feedstock. Simultaneously, microplastics and persistent organic micropollutants (e.g., PFAS, pharmaceuticals) are increasingly detected in water bodies, posing
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capabilities are required for writing documentation and for communication with colleagues in a multinational setting As a formal qualification, you must hold a PhD degree (or equivalent). We offer DTU is a