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Field
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micromachining, selective metallisation and new photosensitive materials, without high-temperature sintering and with minimal material waste. The work is experimental, carried out in our own laboratories together
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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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this PhD will address. This project will develop a direct ammonia solid oxide fuel cell (SOFC) technology for efficient and carbon-free heat and/or power generation. By using a novel catalyst design strategy
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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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heat waves, impacting ecosystem carbon storage worldwide. Join the Institute for Biodiversity and Ecosystem Dynamics (IBED) in this interdisciplinary project to uncover how vegetation traits and
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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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Are you an engineering scientist who wishes to contribute to high-tech applications, state-of-the-art modelling or experimentation of advanced sustainable materials across the scales? We are looking
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been contributing for the past twelve years in the development of cryogenic pulsating heat pipes (PHPs), also known as oscillating heat pipes. PHPs are two-phase passive heat transport devices patented
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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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-edge high-magnetic-field research. The project will focus on moiré materials and offers the opportunity to work at the forefront of this rapidly developing field. The research project focuses on moiré