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National Aeronautics and Space Administration (NASA) | Pasadena, California | United States | 4 days ago
of methods developed for the analysis of ocean world analog samples collected from sites such as Lake Vostok, Taylor glacier, or deep ocean water. Candidates should have a recent Ph.D. in chemistry or a
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wireless communications systems. For details, you may refer to the following: https://wwwen.uni.lu/snt/research/sigcom We’re looking for people driven by excellence, excited about innovation, and looking
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advance the development of in the broad areas of emerging memory materials and devices, including post silicon MOSFET-based computing such as analog in-memory-computing or 2D-material based FETs, MEMS
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design for different RF bands (FR3, MMW, sub-THz/THz) Analog/digital/hybrid beamforming Integrated sensing and communication Reconfigurable intelligent surfaces Hardware-constrained signal processing
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emerging spectrum (FR3, MMW, sub-THz/THz) Extreme massive MIMO communications Analog, digital and hybrid beamforming architectures Reconfigurable intelligent surfaces Machine learning for wireless
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positions within in the AMBER co-fund project please visit https://www.euraxess.se/jobs/392999 Instructions on how to apply For more information and documents/templates/europass link, please visit https
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appointment. See the following table for the current salary scale for this position: https://www.ucop.edu/academic-personnel-programs/_files/2025-26/represented-oct-2025-scales/t23.pdf A reasonable estimate
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microfluidic analogs of phloem sieve plates and other plant hydraulic elements. Conduct controlled flow-pressure experiments to evaluate aspects of the theoretical predictions and quantify resistance mechanisms
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National Aeronautics and Space Administration (NASA) | Pasadena, California | United States | 5 days ago
at this time, unless they are Legal Permanent Residents of the United States. A complete list of Designated Countries can be found at: https://www.nasa.gov/oiir/export-control . Eligibility is currently open to
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topics: Waveform design for different RF bands (FR3, MMW, sub-THz/THz) Analog/digital/hybrid beamforming Integrated sensing and communication Reconfigurable intelligent surfaces Hardware-constrained signal