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. The key objective is to support efforts to advance fundamental and high-impact research. For more details, please view http://www.ntu.edu.sg/spms . Join the laboratory of Shilei Ding at SPMS. We are seeking
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Master Thesis in Physics or Materials Science: Remanent phase shifter based on memristive technology
. Investigate how resistive switching mechanisms influence the optical properties. Fabrication of multilayer device structures composed of diverse materials using advanced thin-film deposition and nanofabrication
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depositing germanium in trenches etched in Si or silicon-on-insulator (SOI) substrates. Such an approach will enable the fabrication of both vertically‑illuminated and wave-guide integrated devices leveraging
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Internal Number: 495583 Department: Student Business Services Salary: Commensurate with Experience/Education' Description: Handles cash transactions, deposits funds and maintains proper documentation. 1
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. The key objective is to support efforts to advance fundamental and high-impact research. For more details, please view https://www.ntu.edu.sg/spms. Join the laboratory of Shilei Ding at SPMS. We are looking
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), ensuring excellent scientific and contractual conditions. More information on the Gen-Q programme: https://www.eucor-uni.org/en/doctorates/gen-q Application deadline: 18 March 2026 Horizon Europe call
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We are seeking a highly motivated candidate to undertake a PhD program titled "3D Temperature Field Reconstruction from Local Temperature Monitoring in Directed Energy Deposition." This exciting
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chemistry, deposition physics, and surface roughness. Are you a glass scientist excited to contribute to breakthroughs in quantum optics, precision sensing, and next-generation photonic systems? If so, we’d
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will manage the daily operations related to thesis/dissertation processes, including approving forms, modifying academic records, assessing fees, conducting format reviews, approving deposits on behalf
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limitations: low deposition rate, cosmetics issues, limited spectral ranges and gradient slopes. Within this Ph.D. thesis, we aim at fixing these limits in order to provide a mature technology that can be