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avatar platforms, including Digital Einstein. Our work focuses on lifelike digital humans powered by large language models, affective computing, and real-time rendering — deployed at high-profile
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to 100% for two projects. Project background Together with partners from academia and industry, we are working on visualization projects. The main research at the IVIA lab is studying interactive human-AI
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, education, social sciences, humanities, innovation, international development, public policy or a related discipline. An advanced degree is an advantage; however, the subject of the degree is less important
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biology with advanced nanotechnology, and electrogenetic interfaces to engineer human cells for next generation bioelectronic medicine, designing programmable cells that respond to electrical
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biology with advanced nanotechnology, and electrogenetic interfaces to engineer human cells for next generation bioelectronic medicine, designing programmable cells that respond to electrical
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biological functions. However, current methods to generate giant unilamellar vesicles (GUVs) face challenges such as size heterogeneity, inefficient membrane protein reconstitution, and limited
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colleagues and users succeed and contribute to a positive team culture. Integrity: You act honestly, ethically, and reliably. and take ownership of your work. Job description The primary goal of this position
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100%, Basel, permanent Would you like to not only manage research data, but also actively shape the future of research data management (RDM)? Do you think strategically, act with technical expertise
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, advanced usages, and transfer methodologies for large language models would be of particular interest. Proficiency in Python and PyTorch, and familiarity with Hugging Face Transformers, NLTK, LLM
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compliant structures, bones, joints, and tendon-like actuation, much like the bodies of animals and humans. As a PhD researcher in our group, you will lead the design, fabrication, and real-world testing