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the dynamics of charge/discharge processes in electrolyte and ionic liquid systems [see, e.g., Pireddu et al., doi: 10.26434/chemrxiv-2023-2ccrw]. Understanding how the solution environment impacts crystal
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work and progress your career, be it in scientific research or the support functions.The MRC is a unique working environment where our researchers are rewarded by world class innovation and collaboration
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, a culture of entrepreneurial activity, and an awareness of global impact and environment. We envisage that the successful candidate will contribute to development of the School’s strategic ambitions
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-oriented environment. Candidates must have a Ph.D. (or be near completion) in the relevant subject area or have the equivalent in professional qualifications and experience in the area of research
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can be a blend of experimental laboratory work and atmospheric modelling. Co-supervisors may include staff from the Schools of Chemistry, Physics & Astronomy, and Earth & Environment at Leeds. Current
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environment. We envisage that the successful candidate will play a key role in implementing digital chemistry approaches to synthetic chemistry challenges within the TECS CDT and will contribute to the School’s
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discipline, a culture of entrepreneurial activity, and an awareness of global impact and environment. We envisage that the successful candidate will contribute to development of the School’s strategic
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to taking up your appointment. You should have experience in working in clean-room environments and be experienced in microfluidic device design and fabrication as well as clean-room workflows. You should be
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/chemrxiv-2023-2ccrw]. Understanding how the solution environment impacts crystal morphology, with an emphasis of polar crystal surfaces [see, e.g., Sayer & Cox, JCP 153, 164709 (2020)]. Developing new
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Chemistry departments in the UK. Bristol Chemistry has wide-ranging intellectual strength across the entire discipline, a culture of entrepreneurial activity, and an awareness of global impact and environment