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within a Research Infrastructure? No Offer Description Job description Next leap in the battery development is expected to be the lithium solid-state batteries (SSB), allowing the replacement
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development is expected to be the lithium solid-state batteries (SSB), allowing the replacement of the flammable organic electrolyte in Li-ion batteries with a safer and a more compact solid electrolyte. Within
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development and computational biology. The project will be conducted at the interphase between the National Genomics Infrastructure and the research groups of Professor Tuuli Lappalainen and Associate professor
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public sector, and collaborate closely with project partners including Uppsala University. The position is based at the Department of Sustainable Development, Environmental Science and Engineering (SEED
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, solid state transformer, DC/DC converters, inverters, etc. Experience in modeling and stability analysis Experience in hardware development or real-time simulation. Awareness of diversity and equal
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and development of advanced battery binders and solid-state electrolytes for next-generation energy storage systems. Battery binders play an important role in maintaining electrode stability, improving
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partners to identify challenges, co-design interventions, and evaluate alternative work practices and management approaches. Contributing to the development of evidence-based frameworks, models, and toolkits
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development of the project. We are particularly interested in candidates whose background can help us connect empirical mobility data and computational modelling with theories of complex systems, network
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of functional programming and formal methods. In addition to theory development, your work will have the potential to scale algebraically-accountable architectures to high-stakes, continuous domains, encompassing
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leap in the battery development is expected to be lithium solid-state batteries (SSB), allowing the replacement of the flammable organic electrolyte in Li-ion batteries with a safer and a more compact