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Field
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EM sensing. You will design innovative sensing systems and advanced data-processing methods to evaluate cutting-edge materials and structures, including carbon-fibre composites and complex
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low-temperature magneto-optical and quantum-optical spectroscopy to investigate strongly correlated electronic, excitonic, and spin phenomena in newly-engineered, tunable, low-dimensional quantum materials based
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into metallic iron has received increasing attention as it offers a truly zero-emission ironmaking for applications of green steel production and iron-based energy storage. One problem, fundamental understanding
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based on promising results obtained on model compounds for cobalt and lithium [2-3]. The recovered metals will be reused for the synthesis of new cathode materials, whose performance will be evaluated
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The PhD studentship will be based at the University of Cambridge in the Department of Materials Science and Metallurgy as part of the Structural Materials Group. The Structural Materials Group is a
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, and spin phenomena in newly-engineered, tunable, low-dimensional quantum materials based on van der Waals (vdW) heterostructures. The advertised position is within the frame of an OptoQuantTOP ERC
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Metal additive manufacturing process monitoring and control – Researcher, PhD position (ERC project)
++), basic knowledge and experience in machine learning applications, materials testing, and previous experience in metal additive manufacturing or other laser-metal machining processes. Where to apply E-mail
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Research theme: Laser materials processing; Advanced manufacturing; Mechanical Engineering This 3.5-year PhD is funded by the University of Manchester and is open to UK students. The funding covers
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of Jerusalem – Zelman Cowen Academic Initiatives (ZCAI) Joint Project (Modern X-ray detectors based on 2D metal halide perovskites). These projects aim to develop inorganic nanocrystals with controlled size
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or organometallic chemistry will be positively valued. Throughout the PhD, the candidate will develop expertise in spectroscopy, materials characterization, and cell biology to meet the project s interdisciplinary