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be to: conduct advanced research into supersonic combustion and compressible reacting flows, particularly investigating how compressibility suppresses fuel-air mixing contribute to research seeking
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). Working closely with academic researchers and industry partners, you will contribute to the development of next-generation intelligent wireless systems that integrate communication, sensing and computing
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established world leader in astrophotonics, having pioneered instruments for photonic interferometry, nulling, wavefront sensing and spectroscopy at the world’s leading telescopes. The successful candidate will
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. There’s a sense of belonging, from contributing to something groundbreaking – a place where great things happen. We value difference and diversity . That’s why we champion an inclusive and respectful
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founded on photonics technologies. Our group is an established world leader in astrophotonics, having pioneered instruments for photonic interferometry, nulling, wavefront sensing and spectroscopy
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research group at the Institute for Photonics and Advanced Sensing (IPAS) through the School of Physics, Chemistry and Earth Sciences (PCES) to make significant contributions to the: Development of novel and
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communication skills, with the confidence and sensitivity to engage with members of the public in their homes. The following would also be advantageous: experience with IEQ sensing hardware, data acquisition
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. The following would also be advantageous: experience with IEQ sensing hardware, data acquisition systems, or IoT sensor deployment experience with mould identification, biological sampling, or indoor air quality