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. fumigatus. The PhD student will build on the group’s long-standing previous work to study the interaction between A. fumigatus and immune cells and to characterise the molecular mechanisms that enable
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education, research, and innovation, which has been inspiring generations of thinkers for over 400 years. Thrive: Trinity College Dublin's Strategic Plan 2025 - 2030 Developing a new generation of dynamic
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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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electronic health records, including dynamic treatment strategies, time-varying confounding, treatment-effect heterogeneity, missing data, competing risks and high-dimensional covariates. Research will sit at
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will focus on one of four intertwined pillars (the “4Ms”), all designed as an integrated system: Monitoring (current dynamics and climate and nature related risks); Modelling (pathways to future climate
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characterisation techniques or laser systems Background in semiconductor device fabrication or cleanroom processing Experience with numerical simulations (e.g., FDTD, COMSOL, Lumerical) Programming skills (Python
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-out scenarios and future contexts, considering key performance indicators pertinent to Ireland’s sustainability and resilience under uncertain futures. The student will join a dynamic, world-class group