Sort by
Refine Your Search
-
characterisation, while integrating polymer chemistry, nanotechnology, and dynamic performance analysis to develop next-generation elastomers for sustainable mobility. Candidates with experience in chemistry
-
cardiovascular medicine problem. The central aim is to develop next-generation computational approaches to identify the electrical signatures of diseased cardiac tissue and improve the targeting of VT ablation
-
remain under-constrained by a lack of experimental evidence. This project addresses that gap directly. Project overview The successful candidate will develop a quantitative, non-destructive, in-situ
-
that will develop digital twins to investigate next-generation ventilation technologies in collaboration with Fisher & Paykel Healthcare. The project: High flow nasal cannula (HFNC) therapy, pioneered by
-
an entirely open-loop manner, with no real-time measurement of the microstructure being produced. This PhD will develop and demonstrate, for the first time, a closed-loop EM-based microstructure control system
-
, it is implemented via three-loop CF cascaded control. The project aims to develop: • Robust and fault-tolerant CF estimator overperforming Level 5 EV automation expectations under EMB parameters
-
in electromagnetism, transport properties, phase transformations, and sensing science, and who wish to develop expertise that is both intellectually deep and highly transferable across materials
-
) and long-term properties (including creep and fatigue behaviour) will be analysed. Furthermore, the project will develop physics-assisted artificial intelligence (AI) models that integrate experimental
-
cell failure and its implications for system-level battery design. By creating a new scientifically robust framework to assess and mitigate thermal runaway, this PhD project will develop a unique
-
Jaguar Land Rover and WMG (University of Warwick). The collaboration seeks to investigate and develop new joining methods of battery pack module assemblies. The biggest challenge is moving away from