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-term position of three years, including merit for previous work, and is expected to start on 1 December 2026 or as soon as possible thereafter. The position is based at the Department of Materials and
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chemical environments and correlated disorder to thermodynamic stability and transport. The research will form a central part of CENSEMAT's simulation-guided materials programme and will be carried out in
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these activities, you will help to strengthen the link between cutting edge research and education at the Department of Materials and Production, and you will take part in the day to day academic life
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PhD Scholarship in Development of Cement-Free Living Building Materials for Sustainable Construction
opportunity to work across materials science, microbiology, fungal biotechnology, and bio-fabrication while addressing one of the most pressing challenges in sustainable construction materials. You will become
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on transition metal catalysis applied to the conversion of specific plastic types to carbon capture materials. The position will focus on different catalytic processes and improving their performance
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PhD Scholarship in Development of Cement-Free Living Building Materials for Sustainable Construction
systems, and explore their integration into extrusion-based 3D printing for sustainable construction applications. The project offers a unique opportunity to work across materials science, microbiology
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master's degree (180 ETCS + 120 ECTS MSc), or at a minimum, a bachelor’s degree equivalent to a Danish bachelor's degree (180 ECTS) and be academically qualified at master's level. As part of the assessment
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Quantum Computing Programme (NQCP) is establishing state-of-the-art crystal growth and materials platforms supporting future quantum processors. We are seeking an engineer with strong expertise in ultra
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systems, and explore their integration into extrusion-based 3D printing for sustainable construction applications. The project offers a unique opportunity to work across materials science, microbiology
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(LSCs) in acute myeloid leukaemia. To this end, we employ mouse models of human AML, mouse knockout lines of putative HSC/LSC regulators, primary patient material and a broad range of genome-wide