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manufacturing-induced aerodynamic deviations. Explore machine-to-machine variability and evaluate how local and systemic errors affect part quality. Enhance CAD-to-print workflows to capture and mitigate sources
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some familiarity with garment or textile construction, digital design (e.g., CAD, CLO3D, Rhino, or similar), and user-centred design approaches. Be motivated to engage directly with disabled participants
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sensors and embedded systems development. • Experience with 3D modelling /CAD. • Publications, competition results, or an active GitHub/portfolio. Research Environment The University of Birmingham is one
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. The following skills are highly desirable but not essential: Ability to program in Matlab/Python Experience with Finite Element Analysis and Reduce Order Modelling Experience in Rapid Prototyping and CAD Design
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/Python and signals processing Understanding of electromagnetics Experience with CAD and mechanical design How to apply: Interested candidates should submit a full formal application, guidance and the
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: Working knowledge of MATLAB/Python and signals processing Understanding of electromagnetics Experience with CAD and mechanical design How to apply: Interested candidates should submit a full formal
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) - Knowledge of programming (C/C++/python/MATLAB), CAD software (SolidWorks/Autodesk) and basic electronics - Understanding of physical and chemical principles of/for transduction - Experience building
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. It is also fundamental that you have to be proficient in CAD modelling. You will be a highly enthusiastic, self-motivated and diligent individual with an inquiring mind and a particular interest in
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electronic design, AI-driven system resilience, and intelligent hardware security. Through the EUROPRACTICE partnership, the IVHM Centre provides access to advanced CAD tools, integrated circuit prototyping
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-driven system resilience, and intelligent hardware security. Through the EUROPRACTICE partnership, the IVHM Centre provides access to advanced CAD tools, integrated circuit prototyping, and technical