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renewable DNA computing prototype. The role encompasses both wet-lab and in silico work, including sequence design, data analysis, experimental planning, and writing publications. The postdoc will work
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international researchers in Cork, and will also interact with collaborators in the USA, Europe and Japan. The research will deploy innovative approaches including “in cell” proteomics and imaging, CRISPR
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virtual/experimental environment centred on teamwork, coupled with other team development digital tools for final year and MSc students. 3) Create a real work-like environment so that 3rd, 4th and MSc
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candidate will lead the design and modelling of thermally regulated DNA motifs and contribute to the development of an automated and renewable DNA computing prototype. The role encompasses both wet-lab and in
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, and impact in renewable energy systems, energy efficiency, digitalization, and sustainable construction practices. The ideal candidate will bring expertise in research and education while demonstrating
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compounds derived from marine microalgae. The BIOVAL project aims to develop a zero-waste biorefinery pipeline leveraging innovative extraction processes to valorise microalgal biomass for food and feed
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to deliver user-friendly, fit for purpose outputs to set European marine management on a course to reverse biodiversity decline. It aims to do this through a process of integrating sustainable ecosystems and a
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systems, as well as their applications to quantum information processing. The project which funds this position focuses particularly on the interplay of strong correlations and geometric fluctuations in
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processing. The project which funds this position focuses particularly on the interplay of strong correlations and geometric fluctuations in quantum materials with topologically order, such as fractional
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processing. The project which funds this position focuses particularly on the interplay of strong correlations and geometric fluctuations in quantum materials, notably in systems displaying the fractional