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the Asian School of the Environment (ASE) and the Earth Observatory of Singapore (EOS) to push forward the use of phase field models in earthquake rupture dynamics and fluid-driven fracture processes
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, aiming to couple viscous interfacial fluid flow, elastic deformations and wetting-like processes at cellular membranes. The theoretical modelling will be in close collaboration with experimentalists, using
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mathematics, mechanics and statistics. The research is on theory, methods and applications. The areas represented include: fluid mechanics, biomechanics, statistics and data science, computational mathematics
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on the UKRI Future Leaders Fellowship (FLF) project titled: “Fluid Dynamics of Deep Interiors in the Outer Solar System.” This position will focus on developing innovative laboratory experiments of rotating
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. The ideal applicant will be eager to engage in a dynamic, cross-border doctoral programme, spending significant periods of study and research in both Poland and the Netherlands. We seek an individual who
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synthetic ones. Ongoing projects focus on understanding the organization and dynamics of the nucleus, the structure and assembly of spindles, the positioning and transport of cellular organelles, and fluid
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Simons Foundation/Flatiron Institute, Center for Computational Biology Position ID: 3497-FRFBM [#27266] Position Title: Position Location: New York, New York 10010, United States of America Appl
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forward the use of phase field models in earthquake rupture dynamics and fluid-driven fracture processes. The project bridges applied geophysics and computational mechanics, and is jointly developed with
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applications working on industrial related projects using high performance computing clusters would also be advantageous Strong foundation in Fluid Dynamics Strong prior experience in CFD – particularly in
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one of the existing areas of strength of the Department. In pure mathematics, these include algebraic geometry, number theory, representation theory, invariant theory, dynamical systems, free