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-frequency characterisation. Investigate and minimise measurement artefacts associated with grounding, shielding, impedance, parasitic effects, noise and signal integrity. Characterise and compare different
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structural systems and ULS / SLS design concepts Experience in structural dynamics and/or vibration analysis is an added asset Familiarity with finite element modelling (e.g. ABAQUS) and probabilistic methods
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microsystems, mesoscale components, and printed electronic or structural elements, including those fabricated on flexible and/or biodegradable substrates, with transduction functionalities exploiting various
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image data. The research explores how AI-driven analysis can move beyond manual reverse-engineering workflows by automating feature extraction and structural interpretation while remaining robust to noise
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), designed to resonate near critical structural vibration modes. The resulting dynamic motion is expected to enhance particle activity, reduce jamming effects, and improve energy dissipation. In parallel
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(PEM), and focused ion beam (FIB) imaging - can be combined with AI to reconstruct nanoscale chip structures and infer functional behaviour from physical layouts. The project addresses the challenge
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, construction & craftsmanship, skilled crafts, wholesale & retail trade, and the hospitality sector. Additionally, the researcher will transfer this field's expertise directly to the ecosystem by designing and
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loading, wave–current environments (e.g., wave kinematics, high-order wave theories), and vortex-induced vibration would be highly regarded. Familiarity with contact modelling and structural degradation