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, requires a large amount of rare-earth material to satisfy the high-torque demand. One of the strong candidates for PM-free high-torque electrical drive is the variable flux reluctance machine (VFRM) because
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candidates for PM-free high-torque electrical drive is the variable flux reluctance machine (VFRM) because of its robust and cost-effective structure. There is a high demand for a comprehensive exploration of
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this industry. Every mechanical contact between system components that are in relative movement increases the risk of wear of these components and the release of wear particles in the system, and every mechanical
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movement increases the risk of wear of these components and the release of wear particles in the system, and every mechanical contact between handling system and substrate increases the risk of contamination
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Join a groundbreaking project at TU/e, partnering with ASML and M2i, to pioneer safer polymer materials for lithographic equipment. Drive innovation in semiconductor manufacturing and shape the future of technology! Irène Curie Fellowship No Department(s) Chemical Engineering and...
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on designing and synthesizing novel PFAs free membrane materials for use in PEM fuel cells. These membranes will enhance the efficiency, performance, and sustainability of fuel cell systems, contributing
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organizations (universities and universities of applied sciences) and interested stakeholders (e.g. policy makers, industry). You will work on designing and synthesizing novel PFAs free membrane materials for use
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17 Apr 2024 Job Information Organisation/Company Delft University of Technology (TU Delft) Research Field Technology Researcher Profile First Stage Researcher (R1) Country Netherlands Application Deadline 22 May 2024 - 21:59 (UTC) Type of Contract Temporary Job Status Not Applicable Hours Per...
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The Delft University of Technology is hiring a doctoral candidate on the subject "Long-term condition prediction of SF6-free alternative insulation gases" TSO’s like TenneT in the Netherlands and
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by investigating the liquid flow in PBMAs. We will investigate how serum binding and release are linked to the pore size distribution and how to quantify and control the juiciness by tuning