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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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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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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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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
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AUSTRALIAN NATIONAL UNIVERSITY (ANU) | Canberra, Australian Capital Territory | Australia | about 1 month ago
quantum nanophotonics with optical metasurfaces. The project work will involve both experimental investigations and theoretical modelling, with a view to obtain and publish original and innovative results
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the results. Build theoretical models to describe or explain the experimental or numerical results. Help organize the research lab. Help train other members of the lab, such as undergraduate students. Job
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implement a framework to infer anisotropic viscosity from both ice and mantle textures in a numerical flow model. This will open new avenues for understanding solid earth and cryosphere dynamics, and their