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on CAD and/or Finite Element Analysis for design and drawing of components. Assist on project and grant management support for the co-directors. Job Requirements: Ph.D. in Materials Science, Mechanical
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development, validation, and optimization of 3D-printed propellers. This includes conducting hydrodynamic analysis, finite element modeling, as well as overseeing site-based test bedding, data collection, and
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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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. These findings will inform a new generation of Finite Element computational models that seek to include the complex behaviour of rocks into volcano deformation models. You will join and work with Dr Craig Magee
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during magma emplacement. These findings will inform a new generation of Finite Element computational models that seek to include the complex behaviour of rocks into volcano deformation models. You will
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operations, and/or ii) mechanical stresses, strains and load limits for a tubing undergoing large deformations. Computational methods, such as finite volume and/or finite element analysis will be used
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transfer, fluid mechanics, and interfacial sciences. Experience with experiments and modeling (traditional CFD modeling). Experience with finite element analysis and/or software packages like Comsol or ANSYS
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(XPS, ToF-SIMS and ATR-FTIRS) and electron microscopy, and Finite Element Analysis of the bonded joints. The Research Fellows will also assist in reporting to the sponsor, and disseminating the results
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(XPS, ToF-SIMS and ATR-FTIRS) and electron microscopy, and Finite Element Analysis of the bonded joints. The Research Fellows will also assist in reporting to the sponsor, and disseminating the results