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research framework (including guidance towards specific methods, materials and bibliography) Guidance in writing, publishing and career development Additionally, we offer a high-quality research environment
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consist in the development of analytical low-order models and in large eddy simulations of the compressible Navier-Stokes equations. Profile You are expected to have a MSc degree in Mechanical Engineering
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-of-the-art infrastructure and opportunities for collaboration within the ETH Domain. Professional development, networking and participation in innovative projects are supported. We provide competitive salary
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to a collaborative lab culture. Workplace Workplace We offer We offer a stimulating role in a vibrant group exploring the molecular mechanisms underpinning bacterial evolution and resistance. This fully
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Workplace We offer We offer a stimulating role in a vibrant group exploring the molecular mechanisms underpinning bacterial evolution and resistance. This fully-funded, full-time position combined with ETH's
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models in the spirit of 3Rs principle. The successful candidate will contribute to the development of next-generation human musculoskeletal organoid models, with a focus on biomaterials design, engineering
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. We are currently seeking a Postdoctoral Researcher. The successful candidate will contribute to the development of next-generation human musculoskeletal organoid models, with a focus on biomaterials
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industrial collaboration. We are seeking an exceptional Managing Director to lead the operational and strategic development of this new center. Project background The M4X Center serves as a central hub for
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background The highly interdisciplinary project is about the development, characterization, modeling, and application of micro-and nanoscale ultrasound contrast agents for molecular imaging fo a variety of
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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