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to catalyse the synthesis and deracemisation of industrially relevant molecules. To achieve this, we will exploit the ability to electrify and directionally control cascade catalysis in an emergent bio
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Application deadline: 31/01/2026 Research theme: Control Engineering, Robotics UK only This 3.5-year PhD studentship is open to Home (UK) applicants. The successful candidate will receive an annual
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Department: Electrical and Electronic Engineering Title: Stability and Control Interaction of Multi-terminal HVDC Systems Application deadline: 14.04.26 Research theme: HVDC, renewable energy, power
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fabrication facility and the Short Binderless Route (SBR) developed in the UK which was utilised at the Sellafield MOx plant (SMP). In each process, the sintering atmosphere is controlled to certain partial
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control performance and efficiency. This PhD project focuses on data-driven analysis of confined liquids structure, informed by total neutron scattering. The emphasis is on developing new analysis
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electric double-layer capacitors (EDLCs). However, their synthesis remains largely empirical, with limited predictive understanding of how processing parameters control pore structure and electrochemical
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-value metal production. However, its broader industrial adoption is limited by complex process dynamics, limited process understanding, and the lack of reliable control strategies. The PhD will advance
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amplification under real-world wave-current conditions. Assess the potential for array design and control strategies to modify, minimise, or even exploit (by focusing waves away from down-wave turbines
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they can reliably, affordably, and fairly support a net-zero energy system. The research will focus on how data-driven and machine-learning-based control can coordinate demand, storage, and local generation
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into useful chemical products is at the heart of the Net Zero transition. In liquid-phase heterogeneous systems, controlling which product forms and understanding why it forms remain one of the field's most