31 high-performance-quantum-computing-"https:"-"https:" positions at Empa in Switzerland
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the project funding agencies. You will have the opportunity to contribute to international forums and apply for new research grants. You will become a part of an ambitious, goaloriented team while having a high
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in X-ray imaging and microscopy techniques is a big plus. Experienced in project management and writing scientific publications. Fluent in English, German would be a plus, enjoying a multicultural
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of catalysts, electrodes, and ionomer membranes with high time resolution, operando x-ray measurements. Develop electrode architecture and catalyst/electrode modification strategies for enhanced durability
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to study and predict. In this four-year SNF-funded project, you will develop data-driven, multiscale simulation methods that combine computer simulations, machine learning, and surrogate models to explore
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and are motivated to publish high-impact results Fluency in English; German is an asset. Our offer We offer an international, highly stimulating research environment with excellent infrastructure
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qualifications include: Hands-on experience with microbiological methods, material characterization, or polymer/ nanoparticle/ hydrogel synthesis. Strong analytical and problem-solving skills with high scientific
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. To this end, we will combine high resolution scanning probe microscopy with fluorescence imaging to study amyloid and tau proteins in biofluids from patients to identify those at risk of developing a specific
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strong track record of relevant publications Excellent English skills, along with proficiency in at least one Swiss national language (German, French, Italian, or Romansh). Ideally, the candidate also: Has
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). Practical synthetic chemistry knowledge and polymer characterization is essential. Candidates with demonstrated research skills and high quality publications will be considered. Fluency in English is required
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: Study activation under NIR light and assess catalytic and photothermal performance. Biomedical evaluation: Validate efficacy in vitro astrocytoma relapse models and ex vivo patient-derived tissue samples