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Field
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within integrated motor drives demands innovative design and manufacturing solutions. Advanced additive manufacturing techniques will be explored to improve thermal management across the entire system. 3
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of: electromagnetic sensor design, modelling, prototyping and experimental validation. The best fit is A candidate interested in high-frequency measurement techniques, sensor hardware development and precision
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at Newcastle University invites applications for a Research Assistant/Associate position in Hardware–Software Co-design for Heterogeneous Integrated Circuits within the Microsystems Research Group
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Everyone is talking about artificial intelligence. But who is developing the necessary chips? We are, for example! Would you like to help drive the development of a new highly efficient AI hardware
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supercomputer hardware. The research work will be informed by collaborations with the scientific computing team that manages the local HPC resources at NTNU, and Uninett Sigma2, which manages both the Norwegian
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. The candidate will join the System Software Group , and study the performance and scalability characteristics of adapting scientific simulation software to current and future supercomputer hardware. The research
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drives demands innovative design and manufacturing solutions. Advanced additive manufacturing techniques will be explored to improve thermal management across the entire system. 3. Electromagnetic
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lifetime under realistic operating conditions. The research will support improved insulation design and qualification for reliable next-generation electric motors, contributing to safer, higher-performance
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Physical Layer Security and Hardware Demonstrator Development Physical-layer security is becoming increasingly important for protecting next-generation wireless networks against eavesdropping, spoofing
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hardware-software design for embedded systems and Embedded AI. Candidates must hold a master’s degree in electrical or computer engineering (or equivalent). Master's students who expect to graduate by