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socio-marine ecosystem models Marine and coastal socio-ecosystems such as Dublin Bay are highly complex systems subject to accelerated climate change. They are characterised by interacting biological
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clinicians. The research will involve investigating fungal cell biology, mechanisms of action of novel antifungal agents, mechanisms of antifungal resistance, and host-pathogen interactions involving A
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thermodynamic framework capable of simulating chloride penetration, interaction with cement hydration products, and changes in pore solution chemistry over time. Experimental chloride concentration profiles
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catalysts used in chemical processes. The successful candidate will combine state-of-the-art quantum chemical modelling alongside machine learning techniques and contribute to the development of predictive
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necessary to apply state-of-the-art sustainability and resilience assessment. The student will have access to data, software and expertise needed to build a mushroom life cycle assessment (LCA) model
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architecture. It will use state-of-the-art robot-aided acoustic measurements and employ advanced computational and acoustic modeling techniques to create a versatile Acoustic Digital Twin, which will be combined
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architecture. It will use state-of-the-art robot-aided acoustic measurements and employ advanced computational and acoustic modeling techniques to create a versatile Acoustic Digital Twin, which will be combined
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, the successful candidate will have access to the breadth of expertise necessary to apply cutting-edge sustainability and resilience assessment. The student will apply, and if necessary adapt, a state-of-the-art AD
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Stipend: €25,000 per annum (tax-free) University fees are covered by the project (up to €5,500 per annum). Additional Benefits: Access to state-of-the-art research facilities at CAPPA and Tyndall National