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to set up nationwide platforms for the accelerated design of metal alloys for structural applications. The recruited person will be responsible for implementing and implementing for research projects a high
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, composition shingles or sheets, wood shingles, asphalt and gravel, and/or related materials, using brushes, knives, punches, hammers, and other tools Cut roofing material to size using a knife. Fasten
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translational outcomes. Read more about the Center’s translation strategy: https://renew.ku.dk/about/stem_cell_medicine/ The University of Copenhagen and other local support structures provide a rich innovation
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for Neuroengineering and Brain-Computer Interfaces (https://sites.uab.edu/cnbci/ ), the Center for Engagement in Disability Health and Rehabilitation Science (https://www.uab.edu/cedhars/ ), the UAB Driving Simulator
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moulding, rotational moulding, extrusion) and bio-composites. The doctoral thesis will be in the context of the general MSCA-DN project RENOVATE (Regenerative engineering innovation in early intervention
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collaboration between autonomous machines and workers in the assembly of metallic structures. Specifically, the work plan includes the following activities: - Development of software to automate the dynamic
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: https://renew.ku.dk/about/stem_cell_medicine/ The University of Copenhagen and other local support structures provide a rich innovation-driven environment for researchers to advance their discoveries
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proposed polymer. The alloy composition from HyCARE will be used: TiFe₀.₈₅Mn₀.₀₅. The composition and structure of the alloy will be characterized by EPMA and XRD. Pellets that cannot be activated under
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flow, carbon/conduction networks and additive structure of powders to be used in dry electrodes. The development, investigation and optimization of dry, solvent-free manufacturing processes
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electronic structure calculations to explore the phase diagram and relevant properties of layered Ruddlesden-Popper-type nickelates. Project background Layered nickelates of the Ruddlesden-Popper series have