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translation of innovative miniature, hair-thin imaging devices we have previously developed [https://doi.org/10.1117/1.JBO.29.2.026002]. These devices are designed to enable early and accurate detection
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position that can be applied across a broad range of industrial sectors, bringing the benefits of passive linear optical superresolution to the domain of in-process control for additive manufacturing
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We seek to recruit a Research Associate/Fellow to join our team developing a groundbreaking technique based on autofluorescence (AF) imaging and Raman spectroscopy for detection of positive lymph
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responsible for data/image acquisition, analysis and interpretation and for using this information to design efficient heterogeneous photocatalytic processes. This will involve working on the synthesis and
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. Our team is closely linked to the Magnetic Resonance and Precision Imaging community at the Nottingham NIHR Biomedical Research Centre. Applicants must be highly motivated and self-driven, with a PhD or
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-organic frameworks, ionic liquids, theoretical modelling of adsorption processes. The Research Fellow will become part of the large-scale multidisciplinary project “Metal Atoms on Surfaces and Interfaces
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of Life Sciences. This position will be especially suited to candidates with an interest in brain tumour genomics and specifically, single cell RNA sequencing and spatial transcriptomics. The post offers a
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. This will involve work on focused ultrasound, magnetic, and electric stimulation experiments, planning experiments, and processing of neuroimaging (EEG, fMRI) and cognitive data gathered before, during, and