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unison. Power efficiency and reliability are key to the performance and uptake of these new devices. The electromagnetic fields created by the module are important in device performance device. New ways
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EPSRC Doctoral Landscape Award: Embedded power electronics converters design for future electric vehicles Applicants are invited for a 4-year EPSRC Doctoral Landscape Award PhD programme, co
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EPSRC Doctoral Landscape Award: Embedded power electronics converters design for future electric vehicles Applicants are invited for a 4-year EPSRC Doctoral Landscape Award PhD programme, co
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flexibility. Aim This PhD project aims to explore and optimise new electric machine topologies that go beyond conventional 2D radial designs. The candidate will investigate innovative electromagnetic
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radial designs. The candidate will investigate innovative electromagnetic configurations that leverage 3D flux paths to achieve higher power and torque density without compromising efficiency. Key
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, especially under extreme weather conditions. High-resolution subsoil characterization using electromagnetic induction (EMI), electrical resistivity tomography (ERT), and ground penetrating radar (GPR) will be
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German Languages English and German (English preferred) Full-time / part-time full-time Programme duration 6 semesters Beginning Only for doctoral programmes: any time Application deadline No specific
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program is needed that addresses large and complex issues and develops new analytical tools. That’s why the WIFORCE Research School, part of the Wallenberg Initiatives in Forest Research was created. Using
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. These positions involve advanced numerical simulations and analysis of spacecraft data. The positions are full-time, 100% funded for four years and lead to a doctoral degree in Computational Physics. The expected
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) applications in the power grid. • Experience with power system modeling, simulation, dynamics and/or optimization, phasor and electromagnetic transient (EMT)-based modeling, and Python and/or Matlab