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Lexington, KY Grade Level 06 Salary Range $18.20-24.82/hour Type of Position Staff Position Time Status Full-Time Required Education HS Click here for more information about equivalencies: https://hr.uky.edu
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collected by moored probes, underwater gliders and micro-AUVs and shipborne sampling. Furthermore, parameters describing atmospheric variability and riverine inputs will be included in the analysis to better
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University of North Carolina at Chapel Hill | Chapel Hill, North Carolina | United States | about 24 hours ago
Hiring Range Dependent on experience and/or qualifications Proposed Start Date 03/01/2026 Estimated Duration of Appointment 12 Months Position Information Be a Tar Heel! A global higher education leader in
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Reference Number AE2025-0573 Is the Job related to staff position within a Research Infrastructure? No Offer Description Portuguese version: https://repositorio.inesctec.pt/editais/pt/AE2025-0573.pdf CALL FOR
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parameters Development of learning rules considering the strong non-linearities of the neurons Identify suitable application task in the field of geolocation and optimize network and learning rules accordingly
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qualifications: Experience in statistical physics, solid mechanics, or fluid mechanics Experience with data-driven modeling, parameter estimation, or model calibration Familiarity with high-performance computing
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Location Lexington, KY Grade Level 05 Salary Range $15.00-22.60/hour Type of Position Staff Position Time Status Full-Time Required Education HS Click here for more information about equivalencies: https
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Location Lexington, KY Grade Level 05 Salary Range $15.00-22.60/hour Type of Position Staff Position Time Status Full-Time Required Education HS Click here for more information about equivalencies: https
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Location Lexington, KY Grade Level 05 Salary Range $15.00-22.60/hour Type of Position Staff Position Time Status Full-Time Required Education HS Click here for more information about equivalencies: https
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of the project is to develop and operate a tailored, near-real-time geodetic monitoring approach that provides reliable, transparent, and interpretable 3D surface displacement estimates. The research will focus