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Programme? Not funded by a EU programme Is the Job related to staff position within a Research Infrastructure? No Offer Description Are you fascinated by how nitrogen deposition and soil processes shape
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at Cornell University is seeking a Postdoctoral Associate to advance research on maize and grass molecular diversity using genomic large language models (AI). The goal is to design nitrogen-efficient maize
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and will be given 5 days to accept or decline. Website for additional job details https://plantenvlab.bio.uth.gr/ Work Location(s) Number of offers available2Company/InstituteDepartment of Biochemistry
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Department UAHS Research Department Website Link https://medicine.arizona.edu/deptmedicine Location Tucson Campus Address Tucson, AZ USA Position Highlights The UA Center for Disparities in Diabetes, Obesity
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French National Research Institute for Agriculture, Food, and the Environment (INRAE) | Sophia Antipolis, Provence Alpes Cote d Azur | France | about 1 month ago
join the “Rhizobium-Legumes Interaction” team, a joint INRAE-Université Côte d’Azur group whose research focuses on nitrogen-fixing symbiosis. You will have access to the facilities and resources
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, increased carbon dioxide, rainfall and snow regime change and how these impact the biodiversity of ecosystems, and the capacity of ecosystems to cycle carbon and nutrients (https://sites.google.com/a
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, H2O2) and reactive nitrogen species (RNS, e.g. NO, NO2, HaNbOC) are generated during plasma operation in humid air and at the gas–liquid interface due to direct bombardment of water with energetic
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National Aeronautics and Space Administration (NASA) | Greenbelt, Maryland | United States | about 5 hours ago
emissions from wildfires can lead to the atmospheric transport of macronutrients and bio-essential trace metals such as nitrogen and iron, which are later deposited over the ocean, potentially fertilizing
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sulfur and nitrogen metabolism influences human health, with a particular focus on protein malnutrition and obesity. Research in the lab centres on sulphate- and sulphite-reducing bacteria
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investigate the dynamics of regulatory networks at the interface of arbuscular mycorrhizal symbiosis and nitrogen-fixing bacteria colonization using molecular biology, proteomics and bioengineering approaches