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Position The PhD student will work on laser imprint and ablator physics related to inertial confinement fusion. The student will be in charge of: Numerical modeling using FLASH code to prepare and dimension
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programme Is the Job related to staff position within a Research Infrastructure? No Offer Description Wind tunnel study of inertial particle dynamics in homogeneous and sheared turbulent flows Supervision
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https://sede.uvigo.gal/public/catalog-detail/27660208 Requirements Research FieldEngineering » OtherEducation LevelPhD or equivalent Specific Requirements Item 01: Academic qualifications and other
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, writing publications, and disseminating results. - ROS 2 environment and robotics simulators. - Integration of simulated sensors (vision, sonar, LiDAR, inertial navigation). - Implementation of guidance
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. The project will address the following key objectives: Advanced Multi-modal Sensing: Integration of lightweight wearable sensors, including inertial measurement units (IMUs), force sensors, and electromyography
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such as audio, event-based vision, and inertial measurements, together with user gaze information. Artificial intelligence algorithms will be developed to fuse and interpret these heterogeneous modalities
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of simulated sensors (vision, sonar, LiDAR, inertial navigation). - Implementation of guidance, control, and planning algorithms under environmental constraints. - Implementation of distributed simulation
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schools in the world. For more details, please view https://www.ntu.edu.sg/mae/research . To develop novel inertial microfluidics and impedance-based cell sorter. To develop novel label-free CQAs based
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. Planned start date: Fall Semester 2026. Strong research background in one or more areas of HED science: Astrophysics and Planetary Science under extreme conditions, Inertial Confinement Fusion (ICF) and
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human balance control during standing and walking, especially in response to perturbations Expertise using wearable inertial measurement units for assessing balance and mobility Experience conducting