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thrive in a team-oriented environment, where passion and commitment go hand in hand. Master’s degree in physics, materials science, electrical engineering, or a related field. Background in solid-state
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methodology for collaborative design that can be applied to current and future accessibility projects, ensuring that diverse voices are justly included in the design process. Your research will specifically
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meter with a non-insulating pipe wall. The research will use existing MHD direct numerical simulations to investigate the flow physics. You will also construct a prototype to test the performance using
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science, physics, environmental sciences, remote sensing, or a related field. Strong analytical and problem-solving skills, with interest in linking satellite data and atmospheric models. Experience
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Your prompt response will ensure that your application continues to move forward in the evaluation process. We assure you that the information provided will be kept confidential and used solely
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Additional Information Selection process Application procedure Candidates are invited to submit their application in English in a single PDF file. Applicants should include: Letter of motivation (max 1 page
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to investigate the flow physics. You will also construct a prototype to test the performance using an in-house 3T magnet. The turbulent pipe flow will be characterized using modern optical methods, over a large
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a broad spectrum of use cases and a diversity of platforms and building blocks. The foundry model is now becoming established where Process Design Kits (PDKs) allow fabless designers to create
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be applied to the Jovian moon Ganymede and Saturnian moon Enceladus. Job requirements Obtained or soon to be obtain MSc degree (or an equivalent degree which allows you to start a PhD) in physics
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(TU/e) is a leading research group dedicated to pushing the boundaries of knowledge in the field of physic-based computing. We are currently seeking a highly motivated PhD student to join our team