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/test articles), intrusive probes, and optical diagnostics. You’ll plan and run test campaigns, analyse data to advance understanding of material–flow interaction, and disseminate results in seminars
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) testing the predictions of specific evolutionary processes with well-characterised sub-samples of young planetary systems (e.g. migration mechanisms and atmospheric mass loss processes). The successful
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friendly. This role contributes to the development of pain-free biofluid sampling methods, such as saliva, dried blood spots, and fingerprints, helping to make advanced molecular testing more accessible and
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, passive sensing). In addition, the postholder will play a key role in building a predictive modelling platform within the Department, designed to host, test, and deploy machine learning models
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friendly. This role contributes to the development of pain-free biofluid sampling methods, such as saliva, dried blood spots, and fingerprints, helping to make advanced molecular testing more accessible and
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characterisation. You will be expected to contribute substantially to device design and modelling, process flow development and device and small array fabrication and testing. In addition to a PhD in experimental
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of comparative genomics and molecular evolution analyses to identify these targets. The project will make use of software developed in the Kelly group as well as other widely used software for biological sequence
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effect, four-point probe, and current-voltage (I-V) testing. A proven track record of high-quality research is essential. Strong organisational and communication skills, along with the ability to work both
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, you’ll play a central role in shaping this ambitious project. You’ll lead a small team of research assistants, design and manage new methodologies, and contribute to high-impact, peer-reviewed publications
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THIS VACANCY IS OPEN TO INTERNAL CANDIDATES ONLY About Us This short-term role (two months) supports King’s College London’s & the Institute of Pharmaceutical Science’s strategic commitment