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-based models that optimise and control pharmaceutical manufacturing processes effectively. Your main responsibility is to develop and enhance discrete element models (DEM), integrating physics-based
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models and simulations that deepen the understanding of the underlying physics involved. The ultimate goal is to create predictive, physics-based models that optimise and control pharmaceutical
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multiple output (MIMO) wireless connectivity. Very good understanding of communication theory. Strong command of mathematics and simulation in MATLAB. Proven track record of innovation supported by
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the role of a novel signalling complex in the regulation of mitochondrial quality control pathways in the failing heart by utilizing a range of molecular and cell biological techniques in vitro, as
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interviews are scheduled for week commencing 23 February. Further details Job Description Where to apply Website https://www.timeshighereducation.com/unijobs/listing/406518/awe-research-fellow… Requirements
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details Job Description Where to apply Website https://www.timeshighereducation.com/unijobs/listing/406693/research-fellow-in-… Requirements Additional Information Work Location(s) Number of offers
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join an existing team of academics and researchers on the project. Please note that this work will take place under UK Strategic Export Control PL9009, which may restrict the participation of nationals
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opportunities for all. We place great value on diversity within our community: we strongly encourage applicants from any under-represented demographic. Further details Job Description Where to apply Website https
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. For an informal discussion regarding this post, please contact Prof Sabine Braun, Director of CTS by email (s.braun@surrey.ac.uk ). Further details Job Description Where to apply Website https
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good understanding of communication theory. Strong command of mathematics and simulation in MATLAB. Proven track record of innovation supported by publications in high ranked journals and conferences