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Field
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generation towards systems capable of planning, pursuing objectives, and executing long-horizon tasks. A central focus will be agentic safety, adversarial robustness, and AI control. This includes agent
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testing. A campaign layer, driven by Bayesian optimization, decides which experiment to run next. The postdoc will own the system architecture below that layer: the PLC and instrument control, the software
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remodels and heals under controlled in vitro conditions. In the first phase, you will validate and implement the BBoC technology. In the translational phase, you will study how a candidate pharmaceutical
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, moving beyond text generation towards systems capable of planning, pursuing objectives, and executing long-horizon tasks. A central focus will be agentic safety, adversarial robustness, and AI control
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Requisition Id 17135 Overview: We are seeking a Postdoctoral Research Associate – Modeling, Controls, and AI for Thermal Systems to advance the design, operation, and maintenance of thermal systems
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the films respond to external perturbations, such as molecular guests, light or charge. The focus will be on organic cages thin films as the key material class. The broader goal is to create robust, automated
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the key material class. The broader goal is to create robust, automated set of synthetic and spectroscopic tools that connect molecular structure and organization, their properties and function. This is
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and how these interactions are regulated to control cellular function, with particular relevance to human disease, including amyotrophic lateral sclerosis (ALS). The lab is located at King’s College
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Lindberg’s lab. The incumbent will conduct research related to biofabrication of oxygen controlling hydrogels as injectable therapeutics for Osteoarthritis. The projects include synthesis of bioinks/bioresins
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improving model performance, explainability, fairness, and robustness; collaborating with health system experts and practitioners in participatory workshops; developing an interactive, publicly accessible map