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combining wave modelling, field observations, remote sensing, advanced mathematical methods and AI, the research will quantify spatial patterns of wave set-up, its statistical distributions and co-occurrence
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Funded: No Compensation Details: Starting Pay - $37,900 Work Hours: Monday - Friday 8:00am - 5:00pm Remote Eligible: This position is not eligible for remote work Special Instructions to Applicant: Job
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: No Compensation Details: Starting Pay - $45,900 Work Hours: Monday - Friday 8:00am - 5:00pm Remote Eligible: This position is not eligible for remote work Special Instructions to Applicant: Job Summary: This role
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to support research on improving evapotranspiration and ecosystem stress estimates across diverse ecosystems. We are seeking an experienced Senior Scientist with deep expertise in thermal remote sensing and
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of aerosol characterisation using the synergy between remote sensing and in-situ methodologies. The successful candidate will mainly focus on mineral dust and on the Eastern Mediterranean and Middle East (EMME
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between climate, hydrology, sediment, and ecosystem systems. The successful candidate will integrate modelling, remote sensing, and AI-based analytics to evaluate regional climate risks and support science
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remote sensing using active sensors. The successful candidate must have a record of publication that demonstrates a process-level understanding of the forces that shape marine cloud microphysics
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National Aeronautics and Space Administration (NASA) | Greenbelt, Maryland | United States | about 9 hours ago
. Description: New techniques and instrumentation are developed and applied for remote atmospheric measurements. Current research includes cloud and aerosol studies using space-based lidars such as the Cloud
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Apply Now How to Apply A cover letter and resume are important submissions for the hiring team to get a sense of your experience. In the cover letter, in two pages or less, please let us know how
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developing methods/tools that use multi-source remotely sensed data. The research aims to improve our understanding of the integrated functioning of continental surfaces and their interaction with climate and