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balloon system and assisting with UAV/floating balloon operations. Analyzing in situ data (holographic imagers) and ground-based remote-sensing data (cloud radar) to derive ice crystal growth rates via
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variability driven by TNE cycles. We will use remote-sensing observations of the solar atmosphere (mainly with SDO, Hinode, IRIS, and the newest observations of Solar Orbiter) and in situ measurements in
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& Design, Engineering Structures, Geoscience and Engineering, Geoscience and Remote Sensing, Transport & Planning, Hydraulic Engineering and Water Management. Click here to go to the website of the Faculty
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