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of size-selected metal clusters using atomic-resolution transmission electron microscopy and electron energy loss spectroscopy. Relating the three-dimensional atomic-resolution structure and catalytic
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of electron microscopy imaging and spectroscopy to reveal the structure–property relationships that govern molecular adsorption mechanisms. This interdisciplinary project is fully funded by DTU’s PhD grant
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Fan, Department of Civil and Mechanical Engineering, Technical University of Denmark, email: jifa@dtu.dk . You can read more about Department of Civil and Mechanical Engineering at www.construct.dtu.dk
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group is a highly ambitious group, pursuing research on microfabrication of 3D polymer and carbon structures and devices and their application in biomedical applications, bioelectrochemistry and
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doctoral candidate who meets the following requirements: A background and strong interest in aluminum alloys, fatigue analysis, and numerical modelling is preferred. Experience with computer aided design
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candidates with a degree in materials science, solid state chemistry, electronic engineering or similar. Experience with one or more of the following areas is considered an advantage. Fuel cells and
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with academic institutions abroad. Your primary tasks will be to: Perform internationally relevant research in planning, guidance, navigation and control of AUVs operating in partly structured
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, synthetic biology, and drug delivery science Have hands-on access to world-class infrastructure and cutting-edge techniques (e.g., electron/confocal microscopy, flow cytometry, DLS, FTIR) Join a highly