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Deep Brain Stimulation (DBS) and contribute to the next wave of innovation in neurotechnology. We are looking for a highly motivated and innovative scientist or engineer to join our interdisciplinary
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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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wave particle and sediment transport Development of a novel model for suspended sediment Dissemination of research findings in scientific journals and international conferences Release of the developed
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experimental results of cross-shore sediment and particle transport processes Development of a novel model for short wave particle and sediment transport Development of a novel model for suspended sediment
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the transfer of new ideas from the lab to real-life applications, improving lives. We are developing a novel microfluidic chip technology that uses surface acoustic wave detection of photoacoustic signals
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National Aeronautics and Space Administration (NASA) | Pasadena, California | United States | about 4 hours ago
for detection, auto-correlation, and depth retrieval; validating signal reflection models through analysis of radar data; and evaluating the performance and limitations of passive sounding in realistic mission
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of satellite remote sensing and chemistry transport model to study air quality, wildfires, aerosol-cloud interaction, land-air interaction, and the interaction of climate change and atmospheric composition
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- Develop original numerical methods for facility simulation in presence of expansion waves - Demonstrate improved estimates of rate constants for two-temperature models - Contribute
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, United States of America [map ] Subject Area: Computational Fluid Dynamics and Wave Propagation Appl Deadline: 2025/09/01 11:59PM (posted 2025/08/04, listed until 2025/12/19) Position Description: Apply
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and dynamic wave propagation, in particular: (i) developing domain decomposition methods, (ii) damage models, (iii) nonlinear mechanics. 2) Validate the model by performing simulations using