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/JPL (https://costar.jpl.nasa.gov/ ). Subject description Robotics and artificial intelligence aim to develop novel robotic systems that are characterized by advanced autonomy for improving the ability
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structure within the overall Geffen Academy program. Build excitement in robotics by creating opportunities for students to build and compete in local, state, and national competitions. Collaborate with local
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signals, imagery, and natural language, via adaptive machine learning; 2) Personalization of sequential decision making, biophysical digital twins, and the operation of digital and physical systems; and 3
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characteristics, pregnancy, race, religion, reproductive health decision making, sex, sexual orientation, unemployment status, veteran status, or any other legally protected basis. All interested persons
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Prof./Associate Prof./Assistant Prof. in AI/Robotics for Aircraft Maintenance / Low-Altitude Economy
/her delegates. Qualifications Applicants should: (a) have a doctoral degree in Engineering with expertise in (1) AI/Robotics for aircraft maintenance, including but not limited to predictive maintenance
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proposing integrated robotics approaches where perception, decision-making, and action are tightly coupled to meet the demands of autonomous systems interacting complexly with their environment. It leverages
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work on the design of methods that enable robot swarms to explore pipe networks, share information, support anomaly detection, and coordinate reporting and dispatch decisions in environments with limited
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Prof./Associate Prof./Assistant Prof. in AI/Robotics for Aircraft Maintenance / Low-Altitude Economy
(g) perform any other duties as assigned by the Head of Unit or his/her delegates. Qualifications Applicants should: (a) have a doctoral degree in Engineering with expertise in (1) AI/Robotics
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multi-agent robotic systems, drone swarms, or autonomous decision making. Experience in integrating prediction, planning, decision-making, and control modules within a simulation or experimental framework
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infrastructure. You will lead the design of methods that enable robot swarms to explore pipe networks, share information, support anomaly detection, and coordinate reporting and dispatch decisions in environments