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, and will work in close collaboration with the FOX team of the CRISTAL laboratory. The LOA team has internationally recognized expertise in the field of radiative transfer and remote sensing. The CRISTAL
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proposes to combine in situ and remote sensing data, radiative transfer models, and chemical and physical analytical methods to better understand the fundamental properties and the impact of mineral dust
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time-consuming experimental measurements. High-throughput phenotyping and remote sensing (RGB imaging, LiDAR, drones, thermal sensors) provide new opportunities to overcome this limitation. Massive
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distinct units: Geophysics and Remote Sensing for the Near Surface (GTS) and Geophysics and Remote Sensing for the Deep Subsurface (GTP). The position to be filled is within the GTS Unit. This team's mission
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modelling. Furthermore, better knowledge of these properties helps refining the interpretation of data obtained from both active and passive remote sensing. PhD Topic This PhD project aims to quantitatively
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will benefit from the various skills in tropical ecology, vegetation modelling, and remote sensing of a large and enthusiastic team of collaborators. Where to apply Website https://emploi.cnrs.fr
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programming. - Interest in natural hazards, particularly gravitational processes. - Doctoral and/or post-doctoral experience in one or more of the following fields: remote sensing, geophysics, natural hazards
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infrared, historically encompasses astronomy, imaging, remote sensing, chemical spectroscopy, as well as linear and nonlinear condensed matter studies. For all these applications, broadband THz sources
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of coupling observations and measurements (field and remote sensing), laboratory experiments and numerical modelling (see page https://lmv.uca.fr/volcanology/ ). Where to apply Website https://emploi.cnrs.fr
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, resorting to the skills of the human operator for the highest level decisions and some fine physical interactions. To ensure the safety of the operator, he/she will remotely control the robots. To achieve