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plasma-/bio-/chemo-catalysts under the supervision of Professor Joke Hadermann. The PhD project is part of a broader research effort focused on developing innovative technologies for the sustainable
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scholarship holder in the field of plasma chemistry and physics. Position You will work actively on the preparation and defence of a PhD thesis within the research group PLASMANT (Plasma Lab for Applications in
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The research group Mechanics of Materials and Structures at Ghent University (UGent-MMS) has 4 vacancies for PhD and postdoc research in the field of fibre-reinforced composites. The vacancies
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catalytic metals. These clusters will be deposited with high control over size and composition using cluster beam deposition on morphologically engineered TiO2 nanotubes. The most efficient catalysts will be
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-metallic clusters that combine plasmonic and catalytic metals These clusters will be deposited with high control over size and composition using cluster beam deposition on morphologically engineered TiO2
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, or their LiDAR beam is blocked by a truck. To reach level-4/5 autonomy, we need teamwork: nearby vehicles, drones, and roadside units must co-perceive their environment, sharing and fusing complementary sensor
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applied electron microscopy. EMAT has several state of the art electron microscopes including three aberration corrected, high end FEI-Titan instruments, a dual beam FIB, an environmental SEM,... EMAT is
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Institute) Besides the project leaders, the Dynamigs team includes several senior and postdoc researchers. As a part of this project, you will conduct quantitative research on demographic behaviour
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from our earlier work on direct beam patterning of MOFs (see https://www.nature.com/articles/s41563-020-00827-x). The position offers opportunities to collaborate within a multidisciplinary team, engage
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-metallic clusters that combine plasmonic and catalytic metals These clusters will be deposited with high control over size and composition using cluster beam deposition on morphologically engineered TiO2