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components and nucleic acids interact and self-assemble. Apply data analysis and modeling to deepen understanding of nanoparticle architectures, and contribute to standardization-relevant method development
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of 1D moiré systems to develop novel device architectures to advance our understanding of strongly correlated quantum systems. The central goal is to fabricate quantum devices hosting heterostructures
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design, synthesize, and characterize hydrogel-ceramic nanocomposites and architectured metamaterials for bone replacement. During the course of the project, you will work in a multidisciplinary team
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participation in seven network-wide events as well as secondments and collaborations, which entail travel to several different EU countries. YOUR MAIN RESPONSIBILITIES In the framework of the FADOS project, we
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-thinking approach to your work, while enjoying the challenge of learning and mastering new tasks? Are you creative, curious, and motivated to optimize, develop, and implement new ideas? If so, you are
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researchers with different specializations, gain skills in computational technologies, and interact with world-class collaborators and industrial partners. Profile Recently obtained master degree in engineering
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(Bio-inspired) unsteady vortex formation and interaction More information about the lab and the ongoing and past projects can be found here: https://www.epfl.ch/labs/unfold/ ; Main duties and
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, antiferromagnets) Collaborate with national and international partners Present your research at conferences and publish in high-impact journals Required: Master's degree (or equivalent) in Physics or a related
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young researchers from around the world? Do you bring a precise, well-structured, and forward-thinking approach to your work, while enjoying the challenge of learning and mastering new tasks? Are you
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reference letters Applications will be reviewed on a rolling basis, and a few of selected candidates will be invited to an interview. Entry requirements at the time the appointment begins: Master degree in