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Field
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Engineering or a comparable subject Good programming skills e.g. in Python or Fortran are advantageous Initial experience in FEM (Finite Element Method) simulation tools e.g. ABAQUS or ANSYS Good analytical
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(PDEs). Our goal is to design finite-dimensional controllers that are not only straightforward to implement but also robust against real-world imperfections, including system disturbances, measurement
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) experience and demonstrated proficiency (SolidWorks preferred). Finite-element analysis (FEA) experience and demonstrated proficiency (e.g., Ansys or equivalent). Gas dynamical modeling expertise (e.g., using
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preferred). Finite-element analysis (FEA) experience and demonstrated proficiency (e.g., Ansys or equivalent). Gas dynamical modeling expertise (e.g., using MOLFLOW or equivalent Monte Carlo codes). Required
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strength modeling. Demonstrated ability in finite element modeling and analysis using commercial finite element software. Additional experience in the areas mentioned in the required qualifications
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designing for the complete product life-cycle. Topics in parametric design and design optimization using Finite Element Analysis (FEA), Computer-Aided Design (CAD), and Manufacturing (CAM) are introduced in
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regenerative tissue performance modeling Biomechanics (e.g., Finite Element Analysis, Computational Fluid Dynamics). (5) Biofabrication of hydrogel-based scaffolds. Cell-seeding of porous polymer (3D printed
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design and fabrication workflows, finite element simulation, solid/fluid mechanics, and concrete durability in marine environments. Previous experience in either experimental, computational, and parametric
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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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expertise in interdisciplinary mathematical modelling, inverse problems, finite element methods (especially in complex and applied settings), machine learning techniques in scientific and industrial