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Field
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DTU’s wave flumes Planning, executing and analysing results from an experimental campaign in the oscillatory flow tunnel at the University of Aberdeen Assembling a large database containing historical
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propagation, titration such as plaque assays or TCID50, neutralization assays) Immunological methods (ELISA, Western blotting, flow cytometry, immunofluorescence microscopy) Basic bioinformatics and data
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advanced ultrasound equipment Develop computational and data analysis tools for bubble dynamics and ultrasound propagation Collaborate closely within our interdisciplinary team, which combines expertise in
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operational condition, in collaboration between LMA researchers from the “Waves and Imaging” and “Sound” teams, and the LISM laboratory at CEA Cadarache. This research project is a continuation of previous
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tasks will include production and purification of viral proteins, propagation of viruses in cell lines with altered glycosylation profiles, and analysis of the impact of envelope protein glycosylation
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predictability and interaction with climate. Here we explore a new paradigm in which polar dynamics is typically dominated by vortices interacting across a broad range of scales, contrasting the dominance of wave
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The University of North Carolina at Chapel Hill | Chapel Hill, North Carolina | United States | 10 days ago
numerical approaches (e.g., Large Eddy Simulation, Direct Numerical Simulation, multi-scale process modeling) and laboratory wave tank experiments to explore turbulent seawater dynamics adjacent to ice
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University of North Carolina at Chapel Hill | Chapel Hill, North Carolina | United States | about 15 hours ago
of the following areas: gravitational-wave/compact-object astrophysics stellar and galactic dynamics binary stellar evolution near-field cosmology/stellar streams. Candidates with experience in theoretical
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positions) Advancing the SINTEX-F and CFES models for improved seasonal prediction performance. Topic 4: Development of ocean current / wave models (one–two positions) Enhancing the accuracy and reliability
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years, it has been discovered that a new class of hollow-core fibers (HCFs) can potentially provide several key advantages over conventional fibers, including lower propagation loss, lower latency (due