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Field
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. The objective of the thesis is to have a theoretical and numerical model of a free-surface flow on an erodible bed, satisfactorily explaining two documented historical cases of flooding by river dike failure
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batteries (RFB), enabling affordable and durable long-duration energy storage. The approach is to use hierarchical structures, i.e. complex material layers that can be optimized to specific battery
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the pyramids and creating digital object models with numerical simulations, for example, using Salvus software or similar. - Publication of research results and presentation of results at scientific conferences
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marine sciences, biological oceanography, ecology, or computer sciences. Strong analytical, numerical and practical skills are essential. Experience in coding or applying quantitative methods in a
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computational fluid dynamics and numerical modelling will be used to simulate performance under varying runoff scenarios, pollution loads and climate conditions. By developing advanced road gully designs with
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: Numerical and experimental study of liquid-gas multiphase flows with particles Where to apply Website https://appsrecerca.urv.cat/cgi-bin/programes/application/inici.cgi?conv=2025PM… Requirements Research
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development, modelling, and system-level optimization in one of Europe’s most vibrant research ecosystems for sustainable energy and transport.
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in numerate, computational, or environmental subject areas. Numerate Subject Areas include e.g.: Mathematics, Statistics, Physics, Economics, Finance, Engineering (Mechanical, Electrical, Civil, etc
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optimization, and advanced simulations, to uncover novel materials tailored for space applications. Key Responsibilities Conduct research in materials, manufacturing, and AI integration. Develop and lead federal
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(HVDC) technology will be used to bundle energy from several windfarms and transport to load centres. Future offshore wind farms are expected to be further optimized either functionally or in