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interaction, adapt to new tasks, and generalize across environments. Dexterous Manipulation – Advancing robotic grasping, in-hand manipulation, and adaptable object handling in complex real-world scenarios
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University of North Carolina at Chapel Hill | Chapel Hill, North Carolina | United States | about 14 hours ago
McAvoy’s lab at UNC-Chapel Hill is seeking a Postdoctoral Research Fellow to work on projects related to the mathematics of how social behaviors spread in complex networks. The Postdoctoral Research Fellow
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Demonstrated ability to work independently and manage complex datasets Strong written and verbal communication skills in English Evidence of productivity (e.g., peer-reviewed publications, preprints, or advanced
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National Aeronautics and Space Administration (NASA) | Pasadena, California | United States | 24 days ago
, seasonal and solar cycle dependent variabilities. These different phenomena make characterization of regional ionospheric dynamics a complex problem. New observational capabilities and sophisticated data
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foster an inclusive and interdisciplinary culture, providing access to state-of-the-art facilities, training opportunities, and a great network of national and international collaborators. We are committed
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or physiological role of Arp2/3 iso-complex driven actin polymerisation in Michael Way’s laboratory at the Francis Crick Institute. Click here to find out more about the Way Lab The Project Branched actin networks
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relationships within complex molecular networks (protein-protein interactome and gene regulatory networks in particular) and how perturbations to such systems may lead to various human diseases. The Yu Lab
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of gene regulation, and transcriptional circuits including gene-regulatory networks, feedback regulation, and regulation of stochastic expression noise in multiple model systems ranging from viruses
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-informed AI framework that decodes the complex relationships between material defects, functional fields (e.g., strain, electrostatic potential), and device performance, with a primary focus on leveraging
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Bilevel programming (BP) is a powerful mathematical framework for modeling hierarchical decision-making processes involving two players: a leader and a follower. In energy network design, for example