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Physics, Quantum Computation or a related discipline and experience of working collaboratively in a research environment . The post holder will have mastery of analytical/numerical tools used to model
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capacity in nuclear and particle physics theory to produce a predictive model of direct detection of WIMPs. It will provide new theoretical guidance to experimental programs of the Centre. Close
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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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help to realize them experimentally on our quantum simulator. We are especially interested in simulating quantum many-body models relevant to materials science and condensed matter physics. We are also
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on the understanding of how the biophysical processes as droplets wet membrane compartments in cells. Numerical simulations and theoretical models will be developed of the viscous interfacial fluid flow at cellular
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to) the following: · Experience in the development of numerical schemes to represent the physics and chemistry of aerosol processes in large-scale atmospheric models like WRF-Chem and/or CMAQ or similar models is
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other indicators such as awards or invitations to present at conferences. Expertise in analysing outputs from numerical models of the climate system, with advanced programming skills and experience in
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quantum phenomena in strongly correlated systems; Analytic or numerical methods of quantum many-body systems and non-equilibrium systems; Quantum field theory; Modeling and calculation of solid-state
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between ice and mantle dynamics. In DYNAMICE, we will implement a framework to infer anisotropic viscosity from both ice and mantle textures in a numerical flow model. This will open new avenues
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. Along the way, you will engage in activities and research in several areas. Learning activities will focus on: The development and characterization of animal models and/or microphysiological systems