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techniques — as well as theoretical and computational techniques that may include finite element methods, crystal plasticity theory, damage theory, molecular dynamics and advanced multiscale modelling methods
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the experimental process. Time permitting, flow sheet modelling will convert the theoretical and bench-scale chemistry research into a practical liquid-liquid extraction set-up. This PhD project will run alongside
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A PhD opportunity at the EPSRC Centre for Doctoral Training in Quantum Information Science and Technologies at the University of Sussex School of Mathematical & Physical Sciences The University
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, Engineering, Computer Science). A Masters (at Merit or Distinction level) is desirable but not essential. You should be able to demonstrate knowledge of the fundamental principles of fluid dynamics, e.g
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opportunities to contribute to both theoretical understanding of sports analytics and practical applications for elite teams. The successful candidate will develop expertise in applying cutting-edge computational
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University Technology Centre (UTC) in Manufacturing and On-Wing Technology, The University of Nottingham. Applicants are invited to undertake a 3-year PhD program in partnership with the UK Atomic Energy
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. Successful candidates should have a background in applied mathematics/theoretical physics/computer science or related discipline, alongside strong computational skills. Value: Home fees paid and stipend
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environment-specific algorithms and machine learning approaches. At the end of the project a technology demonstrator will be built using UAV- and USV- mounted radar sensors, and it will be tested in real world
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Fully Funded PhD Research Studentship A tax-free stipend of £20,870 Social and Applied Sciences Fully Funded PhD Research Studentship Project Title: Environmental chemical exposure and metabolic
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This is a self-funded opportunity relying on Computational Fluid Dynamics (CFD) and wind tunnel testing to further the design of porous airfoils with superior aerodynamic efficiency. Building