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be responsible for the design, analysis, interpretation, and presentation of experiments regarding the study of the pathophysiology of epilepsy or seizure disorders using murine models and human
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, structural health monitoring, or renewable energy systems. Strong experimental skills in materials characterization, electrochemical analysis, or vibration testing. Knowledge of energy harvesting principles
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analysis), divided into 10 research groups and 3 technical platforms. As part of the research project Understanding by Raman Optical Activity of Solvent Structuration - CAORSS , funded by the National
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generation sequencing data analysis. Preferred Qualifications Equipment Utilized Physical Demands and Work Environment PHYSICAL DEMANDS: Standing, sitting, walking, talking and hearing. No special vision
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for real-world interference, noise, and channel variability. You will collaborate with other members of the group who will support the practical deployment of the developed AI models on portable and embedded
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methodologies (i.e., X-Ray scattering, vibrational spectroscopy, scanning probe microscopy) to monitor dynamic interaction between hydrogen storage molecules and electrified catalyst surfaces for chemical
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frames. Contribute to fabrication using composite and polymer additive manufacturing. Prepare and execute aerodynamic, vibration, and endurance testing campaigns. Assist in assembling and calibrating
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students. Opportunities to Contribute Conducts field studies under general supervision. Travels to field locations. Conducts lab Analysis, using analytical equipment as needed. Utilizes the knowledge and
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data analysis. Make advances in one or more of: multimodal data fusion/joint inference; uncertainty quantification with realistic noise/measurement error; complex physics- and artifact-aware forward
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) as well as various other algorithmic methods for data processing and analysis. Current projects within this scope include, but are not limited to: Detection and classification of lesions Segmentation