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-reviewed journals and presenting at professional conferences. • Demonstrate proficiency in experimental methods, and numerical/computer modeling and analysis, including areas such as finite element
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designing for the complete product life-cycle. Topics in parametric design and design optimization using Finite Element Analysis (FEA), Computer-Aided Design (CAD), and Manufacturing (CAM) are introduced in
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of finite element analysis (FEA) software and data analysis • Project or program management experience • Due to the requirements of our research contracts with the U.S. federal government, candidates
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an Innovate UK-funded KTP project (assessed at application) Desirable criteria Experience of working on high voltage power electronic systems (assessed at application/interview) Experience with finite element
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fundamentals Technical writing Data analysis MATLAB, Excel, PowerPoint, CAD Preferred skills/experience areas include: Finite element analysis Experimental test conduct Acoustics Dimensional tolerance stack-up
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fundamental, and expert knowledge of CAD and finite element design is absolutely needed (preferably Creo Parametric and Ansys). A strong understanding of accelerator systems or similar complex, large-scale
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modeling and simulation (e.g., finite element analysis, discrete event simulation). Experience with Infrastructure as Code tools (e.g., Terraform, Ansible). Experience with HPC clusters and workload
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, mechanical CAD, PCB design tools, and finite element electromagnetic analysis software. Experience creating engineering documents, reports, and technical publications, including drawings, procedures, and
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emerging fields. Courses will leverage expertise with computer-aided design, engineering and prototyping, Finite Element Analysis (FEA), and applications of AI and machine learning. Encouraged to develop and
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, fatigue, lifetime analysis, adhesives, interfaces, and power materials, though other relevant specialisms will also be considered. A strong background in computational methods, including finite element