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systems to meet stringent emission legislation and simultaneously reduce carbon emissions. The project will use a novel patented catalyst (for NOx and CO reduction) developed at the University of Leeds and
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for drug discovery e.g. skeletal editing reactions that enable a core ring system to be precisely and directly modified (vide infra). Initially, we will establish high-throughput methods to assemble
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experimental facilities and know-how from the institute of Medical and Biological Engineering at Leeds. You will also work in close collaboration with Attenborough Medical, a leading company for patient-specific
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long time dynamics as a set of short time processes. Therefore one very long simulation is replaced by a number of short ones. An example of such study can be found in ref [1] where we reproduced
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the solution state has not been possible until recently. With advances in computing facilities and in X-ray total scattering and Raman instrumentation, we can now realistically hope to establish the details
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the sensitivity of gas measurements. This will, for the first time, allow THz analysis of trace reactive gases, at the concentrations found within the Earth’s upper atmosphere, allowing reaction products to be
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for pathogen exposure and engineering strategies for controlling risk”, being supervised by Professor Guangyu Cao and Prof. Laurent Georges at EPT, NTNU, Dr. Amir Khan from University of Leeds and Prof. Sasan
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risk”, being supervised by Professor Guangyu Cao and Prof. Laurent Georges at EPT, NTNU, Dr. Amir Khan from University of Leeds and Prof. Sasan Sadrizadeh from KTH and with secondments in University
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/Institute: School of Mechanical Engineering Section: Institute of Functional Surfaces Category: Research Grade: Off grading structure Working Time: 37.5 hours per week Post Type: Hourly/Variable Contract Type
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: Faculty of Engineering & Physical Sciences School/Institute: School of Mechanical Engineering Section: Institute of Functional Surfaces Category: Research Grade: Off grading structure Working Time: 37.5