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the Hardware Reverse Engineering Laboratory (HRE Lab) at NTNU, together with its hardware analysis and reverse-engineering capabilities. The candidate will design and conduct controlled experiments
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, obfuscation, and architectural variability. Because the work operates at the intersection of scientific research and hardware security, the project carefully balances methodological innovation with responsible
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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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computing? Then join QuBriC, a pan-European doctoral network on quantum error correction, as a PhD candidate at TU/e, designing next-generation codes and decoders for real quantum hardware. Information
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Real-time data acquisition and sensor systems Arduino, C/C++, embedded programming, and hardware control Motion-control systems, stepper motors, encoders, and automation equipment Mechanical design using
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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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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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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
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doctoral network on quantum error correction, as a PhD candidate at TU/e, designing next-generation codes and decoders for real quantum hardware. Information Quantum computers have grown remarkably fast