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Field
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Global Change Group at Wageningen University and Research invites applications for a PhD position (4 years) in “Modelling non-CO2 greenhouse gas emissions from agriculture” starting in September 2026
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sustainable forest-based fuels in gas turbines for mobile and stationary applications. The research is based on applying the IEA-ETSAP TIMES model framework, which is widely used across the globe to analyse
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; develop or support modelling approaches that link experimental observations to predictive descriptions of the process; investigate the influence of operating conditions, gas composition, flow rate, pressure
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We are seeking to appoint a research assistant who will undertake research towards a PhD degree in Mechanical Engineering. The project objectives are to develop models for the design and analysis
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Primary supervisor - Dr Thomas Anthony Haynes Pellet-clad interaction (PCI) is a complicated phenomenon, relatively poorly captured in current commercial fuel performance codes. Models have been
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Neptune have thick outer envelopes composed of hydrogen-rich gas, whereas water worlds would be devoid of hydrogen. This project will focus on developing atmospheric models for ‘sub-Neptunes’ (planets
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generation, steel production and cement manufacturing. One promising route is cryogenic carbon capture, in which CO₂ is cooled to very low temperatures and turns directly from gas into solid. This gas-to-solid
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Earth and Neptune), and water worlds in particular. Most existing models for exoplanet atmospheres assume a hydrogen-dominated atmosphere, given the observational focus on gas giants to date. Extending
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to the development of state-of-the-art nuclear-reaction models and evaluated nuclear-data libraries, supporting safe, reliable, and competitive technologies for both existing and future nuclear-energy systems, as
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properties of aquatic sediments control the formation, growth, and migration of methane gas bubbles. Laboratory experiments will be closely linked with innovative field measurements and modelling efforts