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comprise different characterization techniques (e.g. solid-state NMR, low-temperature physisorption of nitrogen, dynamic light scattering, and electron microscopy techniques) to characterize the obtained
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. Key characteristics: Relevant academic credentials, including a PhD in a related field (international relations, war studies or similar) and specialist knowledge of WMD proliferation, doctrine, policy
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. · A PhD (or be close to submission) in atomic physics or a closely related area. 2. Experience · Experience in conducting high quality academic research. · Demonstrable ability
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(MOCVD). The primary aim is to develop energy-efficient 2D materials that can significantly reduce the power consumption of next-generation electronic devices, supporting the UK’s net zero goals and the
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didactic skills High written and oral expression skills Computer user skills Excellent command of English Ability to work in a team We also expect: Teaching experience / experience with e-learning Experience
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) or equivalent qualifications PhD (or near to completion) in relevant subject area (structural biology or biophysics) Proficiency in at least one of these techniques (e.g., single-particle electron microscopy, NMR
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working culture. Person Specification First degree and a PhD relevant to research area or equivalent qualifications High level analytical capability Ability to communicate complex information clearly
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founding a clinical feasibility study at the Royal London Hospital. Background The post holder should hold relevant PhD in Signal Processing, Software Engineering, Electronics Engineering, Biomedical
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the incidence of the associated premature deaths, by advancing the progress on implantable bioelectronics for personalised therapy though implantable long-lasting, lightweight and miniature power
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collaborative and interdisciplinary and the ability to work in a team is essential. About You The successful candidate will be expected to have a PhD degree in biological or computational sciences or equivalent