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and causes of infections and non-communicable diseases. To understand and promote the well-being of people in different cultural and environmental contexts, EPH applies various methods ranging from
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by the Schmidt Sciences Foundation that aims, among other things, to develop a next-generation sea ice model for use in future climate models. It involves 11 partners from five different countries
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to future climate and human use scenarios; 3) Investigate the merits and drawbacks of DBN models in different geographic locations and over varying timescales; 4) Translate DBN model outputs into policy
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will perform experiments, develop dose-response models and mechanistic understanding allowing to develop a workflow allowing understanding and awareness amongst different stakeholders. You will be
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, are crucial for modelling volcanic processes and are vital for understanding the transitions. Geophysical monitoring provides essential information to constrain these parameters and inform decision
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1-dimensional ocean-ice model. You will identify any long-term changes in ocean CO2 uptake along the Antarctic Peninsula using data from Rothera, SOCAT (www.socat.info) and mapped CO2 products, while
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) models to quan- tify and compare environmental performance across various management routes for SMR radioactive waste streams. To ensure real-world relevance and meaningful results, this research will
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the SDM modelling for these five gorgonian species to deeper area in the NW Mediterranean sea. - run BIOMOD2 suite on Blouet et al. (2024) dataset - gather environmental descriptors for extending the SDM
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, extinctions, and environmental change; ● Running simulations and scenario analyses to explore how different discounting rules or time preferences shift optimal conservation choices; ● Fitting models
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observations and modelling of the physics and biogeochemistry of Antarctic shelf seas. You will gain experience in computer coding, statistics for environmental science, working with and piloting autonomous