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position within a Research Infrastructure? No Offer Description Dear Colleagues There is a Post Doc positions avaliable in Dresden/Freiberg, Germany on numerical simulation of the mechanics of biological
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of simulations on sufficiently-long time scales to assess the impacts of climate change. In this context, we are exploring solutions to improve the numerical efficiency of SCHISM when applied to coastal
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numerical analyses, and interpreting simulation results. The position also involves active participation in project meetings and contributing to the preparation of presentations, informational materials, and
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. Description: Numerical simulations have become increasingly sophisticated over the last several decades and their role in cosmological surveys has correspondingly experienced enormous growth. In
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Numerical Study of Soil Remediation by Thermal Desorption with a Focus on Industrial Decarbonization
: Engineer or Master’s degree (M2) in thermal/fluid engineering or process engineering. Desired Skills: Proficiency in numerical flow simulation tools (Ansys Fluent or equivalent) Strong data analysis and
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-scale simulations from the PEPR BRIDGES Conduct sensitivity studies based on simulations in which the coupling between the ocean, the atmosphere and waves will be gradually degraded (as done e.g., by
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(or traveling) waves - Functional minimization - Numerical discretization methods for PDEs - Numerical simulations of PDEs The application should include: - A detailed CV describing the candidate's academic and
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avionics triggered by the interaction of the energetic particles with the electronics. The project will adapt and extend existing numerical codes to simulate these phenomena. Experiments and modelling will
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subsequent analytic/numerical simulations of these models. Write scientific papers. Where to apply Website https://sede.uvigo.gal/public/catalog-detail/27660208 Requirements Research FieldEngineering
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research related to the application of computational mechanics techniques and numerical simulations for the topology optimization of structures considering a minimum weight approach and advanced constraints