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PhD studentship: Bioprinted 3D In Vitro Cardiac Models Award Summary 100% fees covered, and a minimum tax-free annual living allowance of £20,780 (2025/26 UKRI rate). Additional project costs will
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discuss. A competence in modelling is desired, though prior experience with particle simulation methods is not required. This award is only open to Home (UK) candidates. Applicants whose first language is
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vegetation communities to assess the distribution of vascular and non-vascular plants. Modelling will enable the simulation of the hydrological impacts of the restoration under both current and projected
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, Nguyean et al. 2022). However, accurately predicting PB performance – particularly complex flow patterns within the structure and resulting inundation – requires advanced modelling techniques. This research
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offers a non-intrusive, low-cost, and privacy-preserving solution. The research will involve designing and testing experimental setups, collecting vibration data from simulated falls and everyday impacts
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on projections from a single climate model, narrowing the range of possible futures considered. The use of change factors to perturb weather generators, which fails to capture the drought risk from increased
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the Ven Te Chow Hydrosystems Laboratory at UIUC, using 3D-printed riverbed models derived from field data. Finally, insights from experiments will be incorporated into cutting edge flood models to enable
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weather-related extremes, much of it by our team, however we must also consider their cyber risks. Network modelling will be used to simulate a range of different cyber and natural hazards threats
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evolve under and after mining. These observations will be complemented by physical experiments in the Ven Te Chow Hydrosystems Laboratory at UIUC, using 3D-printed riverbed models derived from field data
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superficial deposits, is essential. These datasets will inform hydrogeological models to identify groundwater recharge, routing and discharge, and where contaminants may be concentrated in the subsurface