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students in a collaborative environment to push the frontiers of metal AM. This PhD position is linked to CAM2, which has developed 15 novel AM materials in close cooperation with more than 30 industrial
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intelligent systems that can learn to interpret complex visual and scientific data, enabling breakthroughs in areas such as autonomous navigation, medical imaging, and materials science. The research group is
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electron microscopy is a strong advantage. What you will do Develop and apply advanced microanalytical techniques to accurately characterise recycled aluminium alloys Develop new knowledge on how the tramp
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mechanical analysis, nanonindentation and atomic force mircroscopy will be used to characterize the mechanical properties of (doped) conjugated polymers. You will work closely with fellow PhD students and
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designed work schedules can contribute to traffic accidents leading to injuries or fatalities. Everyday driving in suboptimal static postures may also lead to musculoskeletal problems. Discomfort can
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the right one for you! This is a fully funded PhD position to develop micromechanical models of high-pressure die-cast aluminium, a unique opportunity for a motivated individual to work in a collaborative
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How can housing renovation practices create inclusive and well-designed living environments that also improve resource efficiency and support material reuse? We are seeking a highly motivated
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of terahertz electronics. In this role, you will work closely with world-class research groups and industrial collaborators, benefiting from state-of-the-art facilities. Your research will push the boundaries
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to investigate flow-induced forces in hydraulic turbines under varying operational conditions and how these forces affect the degradation and lifetime of the machines. About the position The position is based
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We are looking for a PhD candidate fascinated in modelling erosion processes in sensitive clay slopes. The highly sensitive clays, called quick clays, can change from solid to liquid with small