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that operate with minimal computing, sensing, and actuating resources—essential features for implementation in real-world scenarios. To this end, we will leverage sophisticated mathematical tools such as
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. You will take an active role in analysing, categorising and documenting the collected data, developing of vulnerability/fragility curves using numerical methods, implementing exposure models, performing
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. You will play a key role in a new project using big datasets and innovative computational approaches to identify genetic regions regulating splicing and gene expression, and investigating how disruption
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to keep Rubisco working. Under heat stress RCA is damaged, increasing Rubisco inactivation and thus increasing the demand for ATP. Plants try to address this by increasing ATP production via cyclic electron
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methods, test and analysis of semiconductor devices and their relationship to high quality epitaxy Desirable Application/Interview/Presentation Experience in the independent operation and management of MBE
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of working as part of a collaborative team and a willingness to supervise PhD and undergraduate students (assessed at: application/interview) Ability to motivate high performance in others (assessed
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Freeman, Prof D Sinclair Application Deadline: 31 July 2025 Details There is a desperate need for new high energy density dielectric materials to use in our electronic devices particularly those operating
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Overview This post is funded by the Quantum Computing Hub (QCI3) supported by the Engineering and Physical Sciences Research Council (EPSRC). The QCi3 Hub is part of Phase III of the UK’s Quantum
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accepted all year round Details Fusion energy, a promising clean energy source, faces significant challenges, one of which is the containment of extremely high-temperature plasma. Magnetic fields
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Deadline: Applications accepted all year round Details Thin films with a high technical specification are used in many everyday devices, including displays, solar cells, electronic devices, batteries, and