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Field
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on learning from human demonstrations for robot manipulation used in household service and manufacturing. The roles of this position include: Develop robotic foundation models for general manipulation based
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develops biomaterial and chemistry-based approaches to manipulate dendritic cell function and downstream adaptive immune responses. Current projects include engineering tolerogenic dendritic cells
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using NVIDIA Isaac Sim, and learning-based policy development for manipulation and locomotion tasks. The role will involve both experimental robotics work and AI model development for sim-to-real humanoid
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modeling of free-electron-driven EUV nanophotonics. Working closely with experimentalists, the research fellow will lead the study of generating and manipulating EUV radiation on the nanoscale, towards
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transgenic manipulation, (iii) determine the role of host and fungal circadian clocks in manipulated phenotypes. Basic Qualifications A Ph.D. in a relevant biological subfield is required. Additional
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industry partners, you will contribute to the development of innovative methodologies that detect, analyse, and explain media manipulation while building an emerging research profile through impactful
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transgenic manipulation, (iii) determine the role of host and fungal circadian clocks in manipulated phenotypes. Basic Qualifications A Ph.D. in a relevant biological subfield is required. Additional
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career opportunity You will lead experimental embryology and skin biology projects that manipulate avian and vertebrate developmental programs. You will apply advanced imaging, genome editing and
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skin biology projects that manipulate avian and vertebrate developmental programs. You will apply advanced imaging, genome editing and functional genomics to reveal how genes sculpt morphology. You will
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? Digital platforms do not convey the tactile, spatial and multisensory qualities that are integral to shared manipulation of tools, prototypes and materials. In the MIRA project, we will develop prototypes