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The Chicago School of Professional Psychology | Chicago, Illinois | United States | about 22 hours ago
Job Description: ABOUT THE POSITION The Department of Osteopathic Manipulative Medicine at the Illinois College of Osteopathic Medicine (IllinoisCOM) is seeking a dynamic and experienced physician
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on the coherent manipulation of quantum states of matter and the control of light–matter interactions, aimed at generating entangled or strongly correlated many-particle states. The project is carried out within
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manipulation systems for contact-rich tasks Key research challenges include: Learning reliable predictive models from sparse and noisy sensory data Incorporating semantic priors into planning and control
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School graduates over a thousand students who are ready to take on great ambitions and challenges. For more details, please view: https://www.ntu.edu.sg/eee Key Responsibilities: The Research Fellow will
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to have use of both hands, dexterity in the fingers and the ability to manipulate instruments, materials, dental hand pieces, and operate dental equipment. The use of feet is necessary to manipulate
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learning and memory research. Preferred Qualifications: Experience with activity-dependent circuit manipulation This is a term position for 1 years and is renewable based on performance and availability
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Job related to staff position within a Research Infrastructure? No Offer Description Project description Third-cycle subject: Computer Science PhD students will work on robot learning for manipulation
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research projects and activities (e.g., conducting research, publishing results), with strong technical skills and high proficiency in English; experience in underwater robotics and manipulation is a plus
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), ensuring excellent scientific and contractual conditions. More information on the Gen-Q programme: https://www.eucor-uni.org/en/doctorates/gen-q Application deadline: 18 March 2026 Horizon Europe call
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electronic system to induce sufficiently strong anharmonicity, thereby enabling its manipulation and readout. As part of this project, we aim to investigate the coupling between the mechanical modes of a