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-matter interactions for applications in sensing, optical communications, and quantum technologies. The scientific environment at our department is vibrant and highly collaborative with world-class
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molecular interactions between ICB and γδ T cells. Position 2 will focus on the potential role of γδ T cells in immune related adverse effects (irAEs). Both positions will be in close collaboration with
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, data science, computer science, and computer engineering, including artificial intelligence (AI), machine learning, internet of things (IoT), chip design, cybersecurity, human-computer interaction
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PhD fellowship/scholarship - Intercropping of cover crops and vegetables to mitigate nitrate leac...
be available for studying the interaction of species and management factors. State-of-the-art field and laboratory facilities and methodologies are available in our science team, where we have a
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based on both visual and tactile information. The candidate will be responsible for developing detailed simulation models of both robots, sensors, and components to be assembled. In addition
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computer science. Interactive theorem provers. Category theory (for computer science). Fluency in English is required. About the Department and the University Based in Odense, the Department of Mathematics and
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PhD scholarship in Biomaterials-based Approach for the Creation of Artificial Red Blood Cells - D...
Evaluating oxygen-carrying capacity and system stability Assessing biological interactions Candidate profile Required qualifications: You must have a two-year master's degree (120 ECTS points) or a similar
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‘bringing science to life’ and we believe in openness, inclusiveness, having ambitions, making a difference and collaboration. You will play a role in the sensor part of the research section, interacting with
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interactions Candidate profile Required qualifications: You must have a two-year master's degree (120 ECTS points) or a similar degree with an academic level equivalent to a two-year master's degree. Ideally
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consist of the following: Numerical simulation of multimode Raman interaction Mode excitation in optical fibers Characterize the modal purity of a multimode Raman amplifier Develop and implement spatial