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opportunities with leading experts in chemical analytics of trace elements, modeling, biogeochemical cycles, and atmospheric processes. Support programmes and networking opportunities such as attending
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biogeochemical processing of nutrients, aiding water quality remediation, and carbon sequestration. Despite their relatively small area, floodplains support a disproportionately high biodiversity due to dynamic
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, visualisation and interpretation using coding (Python or Matlab) and learn to use a 1-dimensional ocean biogeochemical model. You will collaborate with the dynamic Rothera and POLOMINTS (http://polomints.ac.uk
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of biogeochemical (BGC) cycling in the region. There will be opportunities to expand the geographical reach of the dataset with data from other glider deployments in West Antarctica. You will also have an opportunity
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(carbohydrates and proteins) in short-term decomposition experiments Model conditioning with integrated biogeochemical and omic data on carbon cycling in soil Derive effective process descriptions and model
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, greenhouse, and laboratory experiments. Measure greenhouse gas fluxes and profile soil volatiles. Analyse soil microbiome composition and function. Integrate biogeochemical, microbial, and environmental data
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environmental conditions and the analysis and modelling of the consequences of interventions in biogeochemical cycles. The social science methodology is included in the context of human ecology, political ecology
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of carbon (C), nitrogen (N), and phosphorus (P), playing a crucial role in global biogeochemical cycles. The soil cycles of C, N, and P interact dynamically with each other, but some of their individual