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Field
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, sensor lifetime and retention lifetime. Understanding and sequencing these lifetimes is crucial to the success of the project. You will gain experience in cleanroom microfabrication, thin-film patterning
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The GW4 BioMed3 Doctoral Landscape Programme is offering up to 18 MRC funded studentships across a range of biomedical disciplines, with a start date of October 2027. These four-year studentships
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(fabrication technology, nanofabrication) and applications (neural implants and biomedical technologies, biosensors, flexible electronics). Main Tasks and responsibilities: The candidate will be working in
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shaped brain region, implicated in a wide range of functions. The cerebellar cortex, a thin layer of grey matter, is very tightly folded, resulting in a highly convoluted architecture. Its visualisation
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requirements: a) Holders of a Master’s degree, with experience in the deposition of thin films or other materials applied to biomedical devices, namely in the acquisition and modeling of biosignals; b
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Professor in Thin Film Engineering (Teaching & Research track). We are seeking a candidate with the leadership and international standing to develop a world-leading research agenda in thin film engineering
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. The XUV Optics Group is embedded in the MESA+ Institute for Nanotechnology, one of the largest nanotechnology research institutes in the world. The group performs fundamental and applied research on thin
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technologies for imaging the living human inner ear. This project combines biomedical optics, optical coherence tomography (OCT), ultrafast lasers, image-guided surgery, and otology to address one of the most
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or more of the following areas is desirable: - Thin Film Electronics (TFTs, Organic, Hybrid, Low-Dimensional/2D Materials) - Bio-Electronics (Neural Interfaces, Optrodes) - Sensors & Human-Machine
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-level research fellow on a fixed-term basis in the field of thin film materials design and coating growth by physical vapour deposition. The successful candidate will have considerable experience with