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experimental work, has experience in polymer rheology and can implement constitutive models in Matlab or Python. Position 2 – Ply/ply and tool/ply friction during hot press forming Excessive friction between
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signal processing. Experience in programming (Matlab and/or Python and/or C). Analytical mindset. Hands-on approach. Good interpersonal and interdisciplinary communications skills. Proven autonomic
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signal processing. Experience in programming (Matlab and/or Python and/or C) Analytical mindset Hands-on approach Good interpersonal and interdisciplinary communications skills Proven autonomic attitude in
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) and programming (e.g. Python, Matlab), with strong programming skills. Has knowledge of the steelmaking industry or of other process industry (e.g. modelling, experimental tests, techno-economic
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and open team Any educational and/or research experience in the field of cryptographic implementations (coding in C, Assembly, HDL), side-channel and fault attacks (coding in Python, Matlab, lab
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. Initial design and modelling (M10-M22). The chosen concept(s) will be further explored in view of the set of requirements. The available (Matlab) models at TU/e will be used for performing an extensive
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, preferably with a proven background in, or willingness to learn, physics-based numerical modelling and programming skills, in Python (preferably), R, MATLAB, or a comparable language. Openness to collaborate
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rheology and can implement constitutive models in Matlab or Python. Position 2 – Ply/ply and tool/ply friction during hot press forming Excessive friction between the plies in a laminate or between the outer
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constitutive models in Matlab or Python. Position 2 – Ply/ply and tool/ply friction during hot press forming Excessive friction between the plies in a laminate or between the outer plies and the tool surfaces
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data collection and data analysis (e.g. Matlab). You have excellent communication and social skills, enabling pleasant and effective interaction with study participants. Desirable requirements: Good