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, thocro@dtu.dk . You can read more about DTU Health Tech and the Cell and Drug Technology section at www.healthtech.dtu.dk . If you are applying from abroad, you may find useful information on working in
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-equalized flow cell to enable measurements under high hydrostatic pressure and 2) the integration of electronics and fluidics into an autonomous prototype. Furthermore, you are expected to contribute
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, knowledge sharing/building and interdisciplinary collaborations. The research will be part of the DynAI-Brace project, which aims at restoring the daily mobility and independence of patients suffering from
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to make a lasting societal impact, while also strengthening your research profile within fungal-based biotechnology, cell factory engineering, robotics, and data science – a highly sought-after profile
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related to the position, e.g. cell technology or biomaterials science. Strong experience in animal studies and collection of samples for biological and 3D imaging analysis. Ability to plan and manage
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describe the transport of possibly persistent and mobile dissolved contaminants such as PFAS in the unsaturated zone and groundwater. Your responsibilities will include Identify and develop suitable models
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and cancer. The successful candidate will investigate how extracellular vesicles promote inflammation in psoriasis with a particular focus on T-cell derived extracellular vesicles. The project is funded
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counts world-leading companies in growing fields such as e-mobility, automation, climate solutions, and energy efficiency. Learn more about our institute at https://www.sdu.dk/en/mmmi and the center
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at the campus including Centre for Industrial Electronics and Centre for Industrial Mechanics as well as with the industry, which counts world leading companies in growing fields such as e-mobility, automation
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in international journals Background in cancer biology Experience applying bioinformatics pipelines and visualizing NGS data Laboratory experience with cell culture techniques, and in particular 3D