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04.02.2026, Academic staff The Chair of Human-Centered Technologies for Learning at the Technical University of Munich (TUM) offers exciting Ph.D. and Postdoc opportunities in the cutting-edge field
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functions of natural and engineered human cytokines, building on recent work from the lab (see e.g. Aschenbrenner et al., Biol Chem, 2024; Hildenbrand et al., Sci Adv, 2023; Liebl et al., Mol Immunol, 2023
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. THE PROJECT: Membrane proteins make up one third of the human proteome. They are critical for any cellular function from movement to immune defense. Membrane proteins are major drug targets and their mutations
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for an interdisciplinary “bridge-builder” who strives for Scientific Excellence and Real-World Purpose. ● Background: HCI (Human-Computer Interaction), Computer Science, Ethnography, Sociology, or a related
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social or behavioral sciences (incl. human-computer interactions with relevant experience). Applicants must demonstrate experience in experimental work with human participants; possess versatile
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research on how human land-use affects biodiversity and on the importance of biodiversity for ecosystem processes and services. Successful applicants will be able to enjoy all benefits of the TUM Talent
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. The cluster brings together researchers from engi-neering, medicine, social sciences, humanities, and law to study and shape the societal transformation driv-en by artificial intelligence, robotics, and
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environments. Key Responsibilities Conduct research on shared and remote robotic control under uncertain communication conditions, combining passivity-based control, machine learning, and human-in-the-loop
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focuses on organoid and gastruloid systems derived from human pluripotent stem cells to study the interplay of cell fate decisions, morphogenetic flows, and physical constraints. The aim of the present
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conducted in close collaboration with Everllence (formally known as MAN Energy Solutions). The developed methods have to be tested in simulation and on real engines. Previous Work https://openreview.net/pdf