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tomography, high-pressure reactor) with numerical modelling (COMSOL) to quantify and predict dissolution. • Select and characterise biogenic shells (foraminifera, pteropods) from oceanographic cruises
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XCT, SEM or AFM -CAD and simulation tools such as CLEWIN, ANSYS or COMSOL -Electronics packaging, HDI substrates or chiplet architectures -Cleanroom experience Do you not meet every desirable point
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, ANSYS or COMSOL -Electronics packaging, HDI substrates or chiplet architectures -Cleanroom experience Do you not meet every desirable point? Apply anyway. We do not expect anyone to tick every box – much
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hydrodynamic and mechanical stimulation using advanced microscopy; - Developing multiphysics models of fluid transport and tissue deformation (COMSOL Multiphysics); - Validating the platform using patient
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of numerical models to study acoustic and optical interactions in metasurfaces, using in-house codes and COMSOL Multiphysics software. 2. Geometry and Material Optimization: Systematic exploration of structural
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on triboelectricity. Specifically, the researcher will focus on performing COMSOL simulations for the (1) identification of materials composition and morphology, (2) device design in terms of dimensions and integrating
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structures is essential. Experience with finite element, finite difference or discrete element modelling (e.g., FLAC3D, 3DEC, Abaqus, COMSOL or similar software) is considered an advantage. The successful
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difference or discrete element modelling (e.g., FLAC3D, 3DEC, Abaqus, COMSOL or similar software) is considered an advantage. The successful candidate should demonstrate: - strong analytical and problem
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microfluidics Having taken courses on continuum/fluid mechanics with good scores Experience in simulating fluid mechanics problems using, e.g., COMSOL Experience in interdisciplinary research Experience in
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(10%) 5. Skilled in modelling, simulation and programming (e.g. MATLAB, Python, ANSYS, Comsol etc.) (10%) 6. Skilled in Hardware in the Loop equipment (e.g. Opal-RT, Typhoon HIL, etc.) (10%) 7