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SolidWorks or AutoCAD for detailed mechanical design and layout of electrochemical systems. • Proficiency in ANSYS, COMSOL, or similar simulation software for electrochemical and mechanical simulations
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, engineering physics or related disciplines Less than 3 years from Ph.D. graduation date Relevant work experience with CFD simulation software (e.g. CHEMKIN, Cantera, Ansys Fluent, COMSOL, Open Foam) In-depth
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are particularly encouraged (or other non-male gender). NOTE: a background in computational fluid mechanics with standard software (e.g. ANSYS, OpenFOAM) is not particularly relevant and does not itself qualify
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& design, catalyst design & modelling, and carbon capturing & conversion. Proficiency in fluidized reactor design & optimization, hydrodynamics & molecular dynamics modelling (openFOAM, Ansys Fluent, LAMMPS
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Architecture, Marine Engineering, Mechanical Engineering or related field. Proficiency in hydrodynamic modeling tools (e.g., ANSYS/Star CCM/Fluent/Open Foam etc.) and finite element analysis software (e.g
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in CFD software tools such as Ansys Fluent and CFX and with experience in coding using MATLAB, Python, and User-Defined Functions (UDFs). Strong technical communication skills. At Level B
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-based role focusses on electromagnetic design, computational modelling (e.g., COMSOL, CST, ANSYS), dielectric characterisation, and testing that help to bridge the gap between laboratory-scale research
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. Proficiency in hydrodynamic modeling tools (e.g., ANSYS AQWA, OrcaFlex) and finite element analysis software (e.g., Abaqus, ANSYS). Experience with stability and mooring system design. Experience in designing
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(CICS) at the School of EEE is a globally recognized IC research hub with advanced EDA tools and measurement facilities. It provides access to industry-standard platforms (e.g., Cadence, Synopsys, Ansys
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such as ANSYS, or similar Heat transfer experimentation and thermal measurements Proficiency with scientific instruments such as scanning electron microscopes (SEM), optical microscopes, TMA, DSC, X-ray