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nonlinear effects. These nonlinear effects will be generalised via correction terms discovered by machine learning from a large numerical simulated dataset. This dataset also allows for extending the theory
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records and clinical free text. Projects will focus on improving infection diagnosis and treatment, detecting outbreaks in real time, and optimising hospital care pathways. The post is embedded in two major
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informal inquiries, please contact George Gordon george.gordon@nottingham.ac.uk . Application sent directly to this e-mail will not be considered. Our university is a supportive, inclusive, caring and
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alongside numerical simulations relying on high-performance computing and reduced order modelling. We aim to gain new insights about the physical coherent structures which are most relevant to viscoelastic
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Cranfield University and Magdrive will study plume effects of Magdrive's dynamic pulsed plasma thruster on relevant targets. Simulation of plasma expansion and condensation in the space environment will be
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post (part time considered) for 3 years. The closing date for applications is noon on 10 October 2025. You will be required to upload a CV and a cover letter as part of your online application. The cover
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/msca-doctoral-candidate-phd-student-position-molecular-and-tissue-determinants-of-adverse-tissue-outcomes-in-hearing-implants/?p187270 Interested candidates should send an application containing
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the next generation of biopolymer that are naturally and sustainably sourced and with excellent post-use biodegradability profiles. The project goals will include (but necessarily limited to): Discovery
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are also available. And much more! To explore the post further or for any queries you may have, please contact: Dr Andrea Hollomotz, Associate Professor, School of Sociology and Social Policy Email
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capture technologies. In this project, you will: Develop a 3D Digital Model: Create an advanced computational model of high-pressure mechanical seals. Apply Computational Fluid Dynamics (CFD): Simulate gas