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Biotechnology and Bioprocesses, Membrane Technology, Chemicals and Materials, Resource Recovery, and Modeling & Artificial Intelligence. By harnessing its cross-cutting, interdisciplinary, and transformative
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real impact around the globe. Would you like to apply your weather and climate dynamics expertise to investigate the processes driving extreme precipitation in the Indian monsoon? Do you want to advance
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research on forests and trees in different forest ecosystems, analyzing data, developing models, and publishing research results. The employee is expected to lead and apply for research projects and to
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-frequency environmental monitoring, and ecosystem modelling to improve our understanding of ecosystem resilience to climate-induced water stress. The successful candidate will have the opportunity
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of their development and structure. Working closely with colleagues at the Universities of Leeds and Reading, you will integrate theoretical understanding, observational data, and modelling approaches to improve
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. Applies integrated modeling approaches to evaluate climate and resource dynamics and supports scenario-based planning. Engages with community partners to incorporate stakeholder perspectives and align
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resilience planning for the Treasure Valley. Unit URL https://iwrri.uidaho.edu/ Position Qualifications Required Experience Experience working with quantitative analysis, modeling, or data-driven methods
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Biotechnology and Bioprocesses, Membrane Technology, Chemicals and Materials, Resource Recovery, and Modeling & Artificial Intelligence. By harnessing its cross-cutting, interdisciplinary, and transformative
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language Relevant experience in analyzing output from, and ideally also running, weather and/or climate models Strong programming skills and experience working with large (simuated or observed) data sets
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and adoption of interventions that respond to changing needs of the region and its people around climate change, energy, mining, soil and water contamination, food production and livelihoods