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electromagnetic interference; ii) Design of printing patterns for conductive (electromagnetic) inks; iii) Printing of substrates with varying printing parameters; iv) Electromagnetic shielding test; v) and
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bring expertise in optical (bio)physics, particularly in the design and build of optical systems for measurement. You will have excellent communication skills and the ability to work both independently
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responsibilities Design, develop and refine experiments in translational neuroscience research in order to obtain reliable data. Assist in experimental medicine studies and other clinical trials as required. Assist
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large datasets analyses Active participation in LALP Lab activities Required selection criteria You must have completed a doctoral degree in cognitive science or computer design/programming Training and
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Scandinavian language is also beneficial. It is preferable if the candidate has knowledge and experience in the following fields: Digital signal processing and digital filter design Frequency domain analysis and
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for applications, including those resulting from academic degree recognition processes. Workplan and objectives to be achieved: Main objectives: Develop selective coatings for bifacial solar thermal collectors
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by the candidate, including degrees obtained through academic degree recognition processes. Preferred criteria: Knowledge of programming using the SDS®-ONE APEX4 3D Design System. Knowledge in
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of the recognition certificate is mandatory for contract signature. More information can be obtained at: https://www.dges.gov.pt/en/pagina/degree-and-diploma-recognition . Where to apply E-mail bolsas@gmx.com
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of the recognition certificate is mandatory for contract signature. More information can be obtained at: https://www.dges.gov.pt/en/pagina/degree-and-diploma-recognition . Where to apply E-mail bolsas@gmx.com
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communications, and can be used to diagnose diseases, while microbacteria are important for research on antibiotics resistance. The main task for this position is to design, fabricate and optimize a photonic