12 electronics-engineering-"https:"-"https:"-"https:"-"https:"-"https:" PhD positions at University of Birmingham
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form of energy–e.g. electrical, magnetic, acoustic, or chemical–into mechanical motion. These swimmers are expanding the frontiers of micro-engineering and can be used in tasks such as chemical analysis
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Applications are sought for a fully funded PhD 3-year studentship position in the School of Chemistry at the University of Birmingham (UoB) in collaboration with the Defence Science and Technology
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, sensor design and calibration, finite element modelling, polymer processing, embedded electronics, and ex vivo tissue methods. The University is uniquely positioned to benefit any applicant interested in a
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experience in cleanroom microfabrication, actuator design and characterisation, finite element modelling, rheology, ex vivo tissue methods and cell culture. You will work across engineering and life sciences
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or upper second-class honours degree (or international equivalent) in Materials Science, Chemistry, Chemical Engineering, Metallurgy, Physics, Electrochemistry, or a related discipline. Experience in
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PhD Studentship: Designing Human-AI Teams for Meaningful Human Control of 'Machine-Speed' Operations
class or 2:1 degree in the field of Cognitive Psychology, Human Factors, Ergonomics, Human-Computer Interaction, or related behavioural science. An MSc degree in a relevant area is desirable though not
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vacuum, charged-particle optics, laser cooling, ion trapping, precision laser spectroscopy, quantum logic and atomic-clock technology. It sits at the interface between atomic physics, quantum technology
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accumulation can be limited, we can engineer bacteria to become more solvent-tolerant and thereby generate higher yields of useful products [2]. The project supervisory team comprises Tim Overton (microbial
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skills, motivation for undertaking a PhD. All application documents should be in electronic format and sent to Tianyi Zhang ([email protected]). Funding notes This 3-year PhD studentship is funded
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between excited electronic states and the wildly vibrating atoms in these “soft semiconductors”. This can lead to the trapping of charge carriers and excitons (bound electron-hole pairs), shifted and