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of superconducting qubits to quantify performance and identify limiting physical mechanisms Perform quantum device calibrations, benchmarking, and run quantum algorithms Presenting and publishing the research
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We are looking for a highly motivated candidate to pursue a PhD programme titled "CFD-informed finite element analysis for thermal control in wire-arc directed energy deposition." This research
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science. A wide range of quantum theoretical methods shall be employed. A solid background in quantum mechanics and programming skills are prerequisite for this position, as is the readiness to learn and to
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in doing so. The Mechanistic Molecular Biochemistry Group (Prof. Ismail) investigates the molecular mechanisms and biological functions of disease-related proteins using a multidisciplinary approach
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the interaction between network exposure and resource allocation. In this context, your main focus will be to: - Investigate network exposure mechanisms related to 5G core network functions and network
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Powder Bed Fusion (LPBF) parameters. Perform detailed microstructural characterization of IN625 specimens using modern techniques (SEM, EBSD, TEM). Conduct mechanical tests under controlled hydrogen
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theoretical methods shall be employed. A solid background in quantum mechanics and programming skills are prerequisite for this position, as is the readiness to learn and to apply new methods. For an initial
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the opportunity for the PhD student to lead the development of innovative simulation tools that predict Litz wire behaviour across electrical, thermal, and mechanical domains. Supported by the MTC’s advanced wire
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matrix mechanics, particularly in chemoresistance. Notably, the biological aspects of chemoresistance and drug efficacy screening will be the responsibility of the lab’s postdoctoral researcher, who will
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Authority’s STEP pilot plant programme are both based on a spherical tokamak concept. A key challenge with STs is its limited volume that brings the fusion plasma closer its life-limiting “centre-column