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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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interdisciplinary team as well as external scientific and industry partners. Additional responsibilities include supervising master's students, publishing in peer-reviewed journals, and presenting at international
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, clothing, and skin (and body), including convection, radiation, and conduction in materials. Your profile Completed Master`s degree in mechanical engineering Proven experience in continuum modeling (finite
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, in close collaboration with our inter-disciplinary team and external scientific and industry partners. The candidate will support our master students, publish in scientific journals, and participate in
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opportunities for the PhD candidate. Your profile We are looking for suitable candidates with a master level degree in material science, chemical engineering, physical chemistry or related fields with excellent
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qualifications include a Master's degrees in Physics, Nanoscience, Electronic Engineering, Quantum Chemistry or related fields, with a strong background in solid-state physics, quantum magnetism, UHV surface