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interdisciplinary training in molecular biology, transcriptomics, bioinformatics, advanced imaging, and 3D cell culture, within a collaborative and well-supported research environment. Supervisors:Dr Susan Armstrong
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of blades to discs using solid-state joining is a key factor in achieving cost-effective, high performance and low-weight fan and compressor stages in aero-engines. LFW is an established joining process
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of blades to discs using solid-state joining is a key factor in achieving cost-effective, high performance and low-weight fan and compressor stages in aero-engines. LFW is an established joining process
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of blades to discs using solid-state joining is a key factor in achieving cost-effective, high performance and low-weight fan and compressor stages in aero-engines. LFW is an established joining process
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-physics optimisation, ultimately delivering prototype-oriented design methodologies for future industrial applications. Who we are looking for: We are seeking an enthusiastic and self-motivated candidate
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laboratory for the first time. You will make use of laser Doppler and hot-wire anemometry in the 10x5 wind tunnel (the flagship of the National Wind Tunnel Facility). You will conduct particle image
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4D printing is emerging as a transformative manufacturing paradigm in which 3D-printed structures are engineered to change shape over time in response to external stimuli. In an engineering context
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are developing a suite of models to deliver a through-process microstructural and mechanical property prediction framework for steel. By integrating these models into a cohesive digital twin architecture, the work
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models of glaucoma. This interdisciplinary project will provide comprehensive training in molecular and cell biology, regenerative medicine, disease modelling, and advanced imaging technologies. You will
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biology and general laboratory practices. Experience in bioinformatics and specific techniques, such as chromatin biology and confocal imaging, is desirable, but training will be provided. What we can offer