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Your Job: Implement the semi-Lagrangian method for pure convection problems using FEniCSx ( FEniCSx: https://fenicsproject.org/download/ ) Extend the code to solve convection-diffusion-reaction
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the processing behavior of fiber reinforced polymer composite materials Development and further enhancement of material characterization and finite element-based simulation methods Material modeling for fiber
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, Python, Julia, or MATLAB Knowledge in numerical methods and simulation, particularly for partial differential equations and finite element methods Basic understanding of mathematical modeling with and/or
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Participation in machining of turbine disks for aero engine research Measuring of distortion of a turbine disk when clamped on a turning machine Simulating clamping condition using the Finite Element Method (FEM
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models using experimental data for precise mapping of real processes Conducting detailed analyses of thermomechanical stresses in electrochemical converters using the finite element method (FEM
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Python and/or object-oriented programming Basic knowledge of the theory and methods in the Finite Element Method (FEM) or similar methods is advantageous Good language skills in English, German is
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Substantial experience in programming in C++ Substantial knowledge about Finite Element Method (FEM), Smoothed Particle Hydrodynamics (SPH), and/or peridynamics Solid knowledge in computational fluid dynamics
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finite element simulations (e.g. Comsol) Experience in cell culture Willingness to actively supervise dissertation projects and contribute to the long-term projects of the research group Willingness
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and safe use of the material through crack initiation and growth. In this context, you will help develop a state-of-the-art finite element modelling (FEM) framework that simulates crack growth and
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#Substantial experience in programming in C++ #Substantial knowledge about Finite Element Method (FEM), Smoothed Particle Hydrodynamics (SPH), and / or peridynamics #Solid knowledge in computational fluid