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of metrics that aim at quantification of the effect of selected deconstruction methods on the structural reliability of deconstructed elements. As a part of your project you will make a selection of
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of tissue response at spatiotemporal scales not achieved before, with complimentary techniques. We will establish finite element (FE) models of the human cochlea in (not limited to ABAQUS, ANSYS, etc.), using
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or strong interest in geomechanical and/or hydrological modelling using continnum-based numerical methods (e.g., finite element method, finite difference method); strong quantitative and programming skills
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(e.g., finite element method, finite difference method); experience or strong interest in using reflection seismics for subsurface exploration; strong quantitative and programming skills; the ability
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efficiently work in a highly multidisciplinary team. You have a strong background in linear and tensor algebra, non-linear mechanics, advanced finite element analysis, computational solid mechanics
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or similar 3D mechanical CAD design tools; Experience with Finite Element analysis; Experience with hands-on work (e.g. integration of mechanical parts). Diversity, Equity and Inclusiveness ESA is an equal
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, Structural Engineering or related areas, with knowledge of structural mechanics and soil mechanics. Familiarity with masonry mechanics is an advantage. Technical Skills: Experience with advanced finite element