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of transfer-printable tunable narrow-linewidth laser sources for interferometric near-infrared spectroscopy (iNIRS). This research sits within CARE 2, which aims to develop a wearable biomarker sensing
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(UWB) RF sensing, localisation, and vital sign recognition. The successful candidates will be working with a team of researchers on a range of topics, including artificial intelligence, RF sensing and
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and Qorvo. The UCC part of the project focuses on the development of agentic AI and digital twin concepts for Ultra-Wideband (UWB) RF sensing, localisation, and vital sign recognition. The successful
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focuses on the development of agentic AI and digital twin concepts for Ultra-Wideband (UWB) RF sensing, localisation, and vital sign recognition. The successful candidate will be working with a team of
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(UWB) RF sensing, localisation, and vital sign recognition. The successful candidate will be working with a team of researchers on a range of topics, including artificial intelligence, RF sensing and
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into dialogue with renewables development in an area, for instance through narratives that convey a sense of sociocultural continuity or economic security. In this way, ENACT can help give shape to engagements
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. For informal enquiries please feel free to contact. Eoin Hinchy at [email protected] or Eoin O’Connell [email protected] Project description and role: The project is structured around five core pillars
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on next-generation communication and sensing technologies for enhancing safety and performance in intelligent networked systems. The appointee is expected to make significant contributions
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and participate in our vibrant research community here at CSIT. The appointee will work on a project focused on next-generation communication and sensing technologies for enhancing safety and
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are particularly interested in candidates whose research focuses on how plants sense and respond to abiotic stress at the molecular level, plant epigenetic responses and the molecular basis of plant resilience