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within CAPPA, in the area of integrated lasers and optical coherence tomography (OCT). The research will concern the development and application of new techniques for OCT using high-speed, compact akinetic
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sustainable catalyst platforms. This PhD project, Data-enhanced Quantum Chemistry for Predictive Catalyst Design, aims to Develop computational approaches for the discovery of sustainable catalysts based on low
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component development and testing towards high-value products primarily for the construction sector, but with the possibility of other sectoral uses. Activities: Some of the core PhD research activities will
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will be to develop models to assess life cycle cost, environmental and social impacts of mushroom production – underpinning expansion of the Agnav.ie platform to evaluate mushroom sector sustainability
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competitiveness assessment. The main tasks will be to develop models to assess life cycle cost, environmental and social impacts of mushroom production to evaluate mushroom sector sustainability. Supervision
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multidisciplinary project team including PIs and postgraduate researchers within this research cluster. This is an innovative cutting-edge project which will yield transformative developments in the field of two
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-funded CIRCUIT project (Causal Inference for Resilient Cities and Urban Integrated Transport), a four-year interdisciplinary research programme at Trinity College Dublin. The project develops advanced