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project is a collaboration between researchers in the UK, Spain and Ecuador, it builds directly on our previous work identifying and characterising the molecular mechanism of altitude adaptation through
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. You will conduct the research activities into the computational fluid dynamics simulation and optimisation of vortex reactors. You will develop physical and numerical models for the three-dimensional
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culture empowers people to achieve this aim and to collectively, and individually, make a real difference. The role A research fellow position is available to work on the project “Dynamic and Adaptable
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experience for example with python, fortran, C++ or others. Experience in modeling spectroscopic observables. Experience in quantum and semi-classical dynamics As a founding signatory of the Athena SWAN
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. Mendonça. You will investigate ocean and sea-ice dynamics on Earth and the icy moons of our Solar System, using the state-of-the-art Oceananigans model. Over the two-year appointment (1 + 1), you will also
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, you will join a dynamic research climate, which also provides access to research expertise in our various institutes – for example, Geosolutions, water@leeds and energy@leeds centres. Salary
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in the first instance, but additional funding is currently being applied to extend the post for ext ra 2 years. About you The postholder will have a PhD/DPhil in life sciences (molecular biology
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, mathematical criteria stability and robustness of neural networks, applications of topology and geometry to deep learning, the topology and geometry of data, or the dynamics of learning. The successful candidate
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quality modelling approaches to analyse the flow interactions between sewer discharge of surface runoff, as well as the dynamics of pollutants and pathogen propagations associated with water movements. The
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spectroscopic observables. Experience in quantum and semi-classical dynamics As a founding signatory of the Athena SWAN charter, and holder of a silver award, we’re committed to improving equality. We aim