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cell metabolism in liver diseases and liver cancer. The projects are built upon our publications on nitrogen metabolism and ammonia handling in several cancer types (PMID: 26603296, 31665640, 36256480
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characterisation tools to understand and optimise the conversion of air and water into nitrogenous compounds to be used for fertiliser. You will be responsible for engaging in experimentation and technology
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-mediated nitrogen reduction reaction (LiNRR) systems for green ammonia synthesis at Aalto University’s Department of Applied Physics. In this position, you will have a chance to make an impact by
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Postdoc in Decoding Biological Nitrification Inhibition (BNI) in Cereals: Integrating Metabolomic...
as possible thereafter. You will be part of a research environment focusing on sustainable crop production, nitrogen use efficiency and plant–soil–microbiome interactions. You will be contributing
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: Characterization of sorbent/porous materials characterization e.g. nitrogen sorption (BET, BJH, NLDFT), breakthrough measurements, SEM, TEM, TGA, FTIR, NMR, thermal conductivity measurements Synthesis and/or shaping
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of nitrogen (N) that can be fixed from the atmosphere, major nutrients such as potassium (K), silicon (Si), phosphorus (P) or minor nutrients such as metals (zinc, Zn; magnesium, Mg; calcium, Ca; boron, B
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. The successful candidate will contribute to the enhancement, integration, and evaluation of model components for farm-scale carbon and nitrogen cycling across various livestock and manure management practices
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AgriLife and make a difference in the world! Position Information: The successful candidate will contribute to developing and evaluating terrestrial and aquatic nitrogen dynamics and emission modeling, with
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respiration, POXC, aggregate stability, ACE protein, potentially mineralizable nitrogen, etc.). Proficiency with statistical analysis and data management using software such as R, SAS, or similar programs
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tissue homeostasis in the fibrotic liver by modulating myofibroblasts and macrophages via the production of reactive oxygen and nitrogen species (RONS). By inducing post-translational modifications (PTMs