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, little is known about cross-talk mechanisms. In this project, the student will use multi-scale modeling, combining elementary reaction mechanisms with mesoscale and continuum-scale multiphysics simulations
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preprocessing of high-quality data essential for training advanced machine learning models. Task 2: Development and training of a deep learning model to accurately predict the bioprinting input parameters
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group. Advancements in tissue model development are central to the goals of Print4Life, which seeks to revolutionise how functional, bioengineered structures are designed and fabricated. Within
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to the evolving needs of industry, complemented by DCU’s pioneering INTRA work placement initiative. Research within the School spans key domains such as biomedical engineering, advanced manufacturing, sustainable
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opportunities for suitably qualified individuals to pursue a Structured PhD on any of our wide range of programmes . Successful applicants will be expected to have a first or upper second class honours primary
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of Chemistry. This position is intended to begin January 1, 2026. The aim of this project is to develop and apply computational methods for statistical learning on chemical reaction network (CRNs) structures
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offers a pathway to nurses to conduct research that advances innovation in practice within St James Hospital and associated partners, for example to improve the integration of care, services or health
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. Quantitative, computational, or mixed-method approaches are particularly encouraged, including but not limited to geospatial analysis, machine learning, predictive modelling, and causal inference techniques
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Sustainable Gender Equality Champion and we hold an Athena Swan Silver award, recognising our ongoing work to advance gender equality both within Trinity and in the Higher Education sector. Trinity is committed
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to advance gender equality both within Trinity and in the Higher Education sector. Trinity is committed to supporting work-life balance and to creating a family-friendly working environment.