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Familiarity with hydropower technology Experience from numerical simulations Good written presentation skills and oral English language skills PLEASE NOTE: For detailed information about what the application
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4-year D.Phil. studentship Supervisors: Dr Simone Falco, Prof Daniel Eakins The ability to simulate initiation and detonation effects within energetic materials is a significant capability gap
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study, you will develop a model for the dynamic methane cycling in global inland waters. This model will build on our pioneering model framework and simulate the changes in cycling fluxes of major carbon
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, thermal dynamics, and charging strategies. Validate methods through simulation and collaboration with industrial partners (Volvo Group). Publish results in leading journals and present at international
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. You will work here The project is a part of Open Technology grant for our proposal COre-based PYrrolizydine alkaloid synthesis for Contaminant Annotation and Tracking ( COPY-CAT ). The research is
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for our proposal COre-based PYrrolizydine alkaloid synthesis for Contaminant Annotation and Tracking (COPY-CAT ). The research is embedded within the group of Dr. Laura Righetti and Dr. Gert Salentijn
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on mesoscale fluid dynamic simulations, microclimatic and turbulence modelling procedures in urban environments shall be performed. Subsequently weather-and turbulence-related limit values shall be formulated
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during downstream processing. Theoretical investigation of molecule stability during DSP, using molecular interaction simulations such as e.g. Molecular dynamics (MD). Combination of PAT and data driven
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based in the School of Engineering. You will work under the guidance of Tousif Rahman and Prof. Rishad Shafik. For informal queries please contact Dr. Tousif Rahman at: tousif.rahman@newcastle.ac.uk
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frequencies of different UAV categories for different power settings shall be modelled. Second, based on mesoscale fluid dynamic simulations, microclimatic and turbulence modelling procedures in urban