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, or agricultural greenhouse gas estimation. Proficiency in working with spatial data and geospatial tools. Interest in science–policy interfaces. What you will do Develop and apply biophysical and economic models
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students of color • 217k+ alumni worldwide • For more interesting facts about OSU visit: https://oregonstate.edu/about Locations: Oregon State has a statewide presence with campuses in Corvallis and Bend
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they continue to investigate. Approaches include genetics, spatial genomics, single-molecule biophysics, super-resolution imaging, computational modeling, and structural studies including X-ray
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Academy curricula in applied higher education: VMV0590 Navigation Equipment for Waterways, VMS0770 Spatial Planning of Marine Areas and Environmental Impact Assessment, VLL1590 Use of Future Fuels in
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) knowledge on cutting edge technologies including but not limited to genomics, single-cell spatial multi-omics, proteomics, metabolomics; (iii) track record of independent research and publications on related
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material platforms exhibiting time-varying responses. Using adjoint-based optimization and spatial structuring, to realize complex time-modulated medium dynamics with realistic material constraints and
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for a motivated researcher who wants to solve actual spatial, environmental, and socio-economic problems using modern data, analytical tools, and computing methods. We expect an active approach, a
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spatial intelligence, asset visibility, lifecycle management, and data‑driven planning across the built environment. Proven track record leading multiple concurrent facilities and construction technology
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that encompasses research activities in the areas of urban informatics, spatial big data analytics, geographical information science, satellite positioning, ubiquitous positioning, photogrammetry and
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experience working with spatial data. Experience meteorological and pollutant transport models. Familiarity with measurement methods in atmospheric sciences (e.g. lidar, particle counters) A valid category B