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Field
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enthusiastic ecologist who wants to uncover how nitrogen deposition affects plant and arthropod biodiversity? Are you excited by the idea of combining large-scale fieldwork across Northwestern Europe with hands
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globe are under pressure from anthropogenic activities, such as the continued deposition of nitrogen, resulting in the loss of biodiversity and functionality. Quantifying biodiversity and ecosystem
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for Atmospheric and Climate Science (IAC) – ETH Zurich invites applications for a 4-year PhD position on “Investigating oxidized nitrogen in the troposphere”. The Atmospheric Chemistry group at ETH conducts
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(Perspektywiczna Cave). A Late Glacial tundra assemblage (Perspektywiczna Cave) will be added for comparison. The project methods are analyses of carbon and nitrogen stable isotopes in plants (protein, cellulose
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routes that combine captured CO₂ with nitrogen recovered from wastewater offers an opportunity to simultaneously reduce greenhouse-gas emissions, recover valuable nutrients, and enable more circular
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plasma‑filled bubbles are injected into water to create nitrogen oxides (NOₓ) directly from the air. Because the bubbles are so small, they provide a large contact area, making the process highly efficient
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of warming and changes in resource availability (light, nitrogen and phosphorus), and 2) improve predictions of ecosystem processes by including the impacts of phytoplankton diversity and composition
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related field. The availability to start your PhD on December 1, 2026. Hands-on experience with experimental methods (in water technology) for biological nitrogen removal and characterization. Proven
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: models of functional relationships Topics: 1. Soil enzymes involved in the carbon and nitrogen cycles 2. The soil microbiome and its functions 3. The relationship between microbial communities and
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the microbial nitrogen cycle for a more sustainable future. As a PhD candidate, you will combine experimental and computational approaches to uncover how microbial communities drive nitrogen transformations and