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new photosensitive materials, without high-temperature sintering and with minimal material waste. The work is experimental, carried out in our own laboratories together with European industry
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PhD Position: Engineering Trustworthy Energy Data Spaces for Heat Transition Planning How can heterogeneous energy data be shared securely and efficiently to accelerate the heat transition
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transition to Net Zero by 2050. Shallow geothermal energy is heat stored below the ground resulting from solar energy absorbed by the earth, which is typically harnessed through the use of ground source heat
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potential for covering the growing need for high-precision sensors, both for basic science and for industrial applications. State-of-the-art quantum sensing methods rely on spin defects hosted in three
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safety concern: they can generate significant heat and damage, critically compromising system redundancy and operative ability. This PhD combines industrial and academic expertise to develop next
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project. We are seeking a part-time researcher to lead and deliver the Liverpool strand of the project. The role will involve the CFD modelling a new super critical CO2 heat exchanger design. You will work
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fracture twin: Digital twin development for hydrogen-assisted crack propagation in buried steel pipelines [APS, Tata Steel; Karo Sedighiani] PhD 7: Cryogenic interface heat transfer for advanced thermal
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High-temperature electrolysis (HTEL) offers the highest efficiency of all known water electrolysis technologies. However, compared to low-temperature electrolysis technologies, it is still at a
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forged directly back into blanks before it is scrapped and mixed, enabling high-purity swarf to be reused with a minimal carbon footprint. The potential is twofold: Companies can buy less raw material
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production of advanced heat exchangers, where thin walls and intricate internal features can improve performance and efficiency. Alloy 625 is expected to play a major role in future heat-exchanger designs