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Field
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, running, and analysing numerical simulations of strongly magnetised plasma turbulence with a helicity barrier, as well as the development of theories and phenomenologies that provide frameworks
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project to develop the thermal radiation modelling and theory in near field. The roles of this position include: Conduct research and develop theoretical models for thermal nanophotonics. Apply numerical
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experimental collaborators, we build numerical and theoretical models from the ground up, revealing how the known mechanics of individual components give rise to collective behavior. Many such phenomena occur
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substantial deliverables. Ideal candidates will also have expertise in renewable energy, energy in buildings, the impact of occupants on energy use and data acquisition and analysis. Energy modelling expertise
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reduction techniques and numerical methods for subsurface and surface flow processes. You will gain experience with forward hydrodynamic models developed in the Coastal Hydraulics Laboratory and contribute
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cell biology, molecular biology, immunology, CRISPR-Cas9 technology and working with pre-clinical cancer models. You will have a proven track record of research achievement and the ability to articulate
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We are looking for a researcher, whose expertise lies in numerical methods for dynamical systems, to work with Dr Rachel Nicks and Professor Stephen Coombes on a Leverhulme Trust - funded project
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Numerical Simulations of Complex Dynamic Systems, E.g. Turbulence, Hurricane. The duty of the role is within the range of: 1) developing novel algorithms on data analyses and data mining, e.g. Large Models
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to developing new models, techniques and methods. Undertake management/administration arising from research. Contribute to enterprise and business development and/or public engagement activities of benefit to
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numerical calculations to simulate collective behaviors of bacteria. Build theoretical models to describe or explain the experimental or numerical results. Help organize the research lab. Help train other