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Field
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in the development, validation, and optimization of 3D-printed modular floating structures. This includes conducting hydrodynamic analysis, finite element modeling, and stability assessments, as
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/MCCS%201st%20Grant%20Call ). The Research Engineer will focus on hydrodynamic analysis, finite element modeling, and stability assessment for modular floating structures. Responsibilities include
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structural engineering or mechanical engineering, received no later than 6 years before the initial appointment. Strong expertise in programming for approaches including, computational mechanics, finite
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transport infrastructure. Your main duties will be carrying out experimental tests on the AMs, multiphysics and multiscale finite element (FE) modelling, analysing the data, and presenting the research
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for simulations, we aim to explore solution strategies to calculate the amount of water given meteorological data and map data. Here, in addition to traditional discretization methods such as finite elements and
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and knowledgeable in the areas of stress analysis (including the Finite Element Method), material characterisation (particularly flow stress determination and modelling), mechanical testing methods
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experimental research where publication is an important component. Participants will be mentored by renowned industry scientists and collaborators at AbbVie and focus on delivering cutting-edge advancements in
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Experience with either optical wave propagation simulations (e.g., Finite-Difference Time-Doman, Rigorous Coupled Wave Analysis, FEM) for metaoptics or experimental experience with metaoptics Department
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natural fracture cements using a range of analytical techniques. In addition, you will perform post-mortem microstructural and microchemical analyses of fracture cements in samples deformed in laboratory
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duty component of 25 %. Place of work is Department of Informatics at Blindern, Oslo. Project description The postdoctoral position is funded by the Department of Informatics at the University of Oslo