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also reducing the membrane lifetime. Cranfield are therefore working on a new generation of inorganic 2D materials to produce a chemically and physically robust reverse osmosis membrane technology
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including C1 substrates using a microbial waste-to-products engineered coculture platform. The work will involve C1-consuming microorganisms including photoautotrophs. The post builds on established work and
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modelling. You will be self-motivated with a proven track record on molecular and microstructural analysis, waste valorisation with stabilisation, degradation kinetics & durability and engineering knowledge
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towards practical user-centric e-textile systems. In this role, you will join an interdisciplinary University of Southampton research team from across the Faculty of Engineering and Physical Sciences and
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Background The Faculty of Science and Engineering at the University of Manchester has been investing in Early Career Researchers for many years, increasing the diversity of our staff
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emitters, and vertically-grown AlN for 3D micro-electromechanical systems (MEMS) applications. Requirements Doctoral degree in a suitable area (e.g. electrical engineering, physics, or materials science) A
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blog: https://engineering.blogs.bristol.ac.uk/category/engineering-includes-me/ Contract type: Open ended with fixed funding until 30/09/2028 Work pattern: Full time Grade: I / J / K Salary: Grade I
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EPSRC-funded PURE collaboration between the University of Southampton and the California Institute of Technology (Caltech). This role sits at the boundary between fundamental glass materials science and
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24 Jan 2026 Job Information Organisation/Company UNIVERSITY OF SURREY Research Field Engineering Researcher Profile First Stage Researcher (R1) Application Deadline 18 Feb 2026 - 00:00 (UTC) Country
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27 Jan 2026 Job Information Organisation/Company UNIVERSITY OF SURREY Research Field Chemistry Engineering Chemistry Researcher Profile Recognised Researcher (R2) Established Researcher (R3