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electro-optic devices, notably the multi-billion dollar liquid crystal display industry. The mathematics of LCs is very rich and cuts across analysis, topology, mechanics, partial differential equations and
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JAX/Julia would be a nice plus. Experience in one or more of the following areas will be considered a strong merit: stochastic (partial) differential equations, controlled differential equations
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. The governing equation for these problems is a nonlinear second-order partial differential equation (PDE) of Monge-Ampère type. The PDE is elliptic if we choose a positive right-hand side, it is hyperbolic for a
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work assignments A wide variety of physical phenomena like radio transmission, ultrasound, acoustics, or tsunami modelling involve the solution of partial differential equations (PDEs) that model wave
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based on Partial Differential Equations (PDEs) to represent the coupled dynamics of roots, mycorrhizal fungi and soil resources under varying environmental conditions. The work will integrate concepts
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in linear and nonlinear Partial Differential Equations and/or Fluid Mechanics Capability of working within a project team with the goal of achieving outstanding results. Good communication and
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oral and written presentation skills in English equivalent to level B2 . Knowledge of applied mathematical modeling, in particular numerical solution of partial differential equations. Experience with
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at Radboud University (Nijmegen, Netherlands) is seeking a PhD candidate with a strong background in the analysis of partial differential equations. The project will be supervised by Dr Stefanie Sonner, is
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skills to model and design optical systems for sustainable high-tech devices for billions of people? Do you like to develop and analyze numerical methods for partial differential equations? Information
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computing tasks such as combinatorial optimisation tasks and solving partial/ordinary differential equations with ONNs. Design and tapeout ONN chips (at least two tapeouts) as proof of concept. Explore ONN