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about them remains surprisingly difficult. Our research addresses this challenge in the following domains: Designing expressive languages for specifying network behavior Developing verification techniques
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research is built around three intertwined questions: how to measure and understand behavior with AI, how brains and embodied agents learn to control the body, and how the brain builds a sense of its body
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of an optoelectronic implant for bladder dysfunction in rodent models Collect and analyse electrophysiological and behavioural data Histologically evaluate tissue following chronic implantation Work independently and as
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for bioinspired robotics. The main focus of this project is how neural circuits in the motor system of the fly, Drosophila melanogaster, orchestrate limb movements and autonomous behavior in complex environments
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successful candidate will conduct cutting-edge research in applied and environmental microbiology, with a particular focus on microbial community assembly and interaction principles using anaerobic digestion
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adaptability at the product-scale through material science and design. Main duties and responsibilities As a research collaborator, you will be expected to: Conduct cutting-edge research including experimental
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, clustering, latent profiles, predictive modeling, or model comparison. Ability to build robust pipelines rather than simply apply standard analysis packages. Strong interest in human behavior, motivation