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academic approval, and the candidate will be enrolled in one of the general degree programmes at DTU. For information about our enrolment requirements and the general planning of the PhD study programme
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. For information about our enrolment requirements and the general planning of the PhD study programme, please see DTU's rules for the PhD education . Assessment An assessment of the applicants will be made by
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research infrastructure-centric ecosystem to implement and sustain excellent service provision, support and drive technology/methodology innovation, and secure the financial sustainability of core facilities
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Job Description We are searching for a talented and motivated PostDoc to develop the theory of quantum light sources for applications in optical quantum computers. The project takes place in
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, and functionalizing EVs for targeted therapeutic delivery. Attract competitive external funding to support your research program. Build strong national and international collaborations, both within
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in the group of Niels Engholm Henriksen (https://www.kemi.dtu.dk/english/research/physical-chemistry ). You must have a solid foundation and interests in quantum chemistry, applied mathematics
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Postdoctoral Positions in PFAS Analytics, Degradation, and Thermophysical Properties - DTU Chemistry
computational determination of thermophysical and physical–chemical PFAS properties. PFAS molecules are defined by the presence of CF₂ or CF₃ groups and exhibit a wide range of unique characteristics, including
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of scientific productivity. Position Structure and Career Path This is a 4-year independent Group Leader position with the expectation of establishing a high-impact research program and securing external funding
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applications. As part of the appointment, you are expected to complete the university’s pedagogical training programme for assistant professors. Your competencies We are looking for a colleague with a strong
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that are very strong in AI and computational modelling of energy materials, and we are building labs for autonomous materials development. Large facilities, such as synchrotron and neutron facilities are close-by