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PhD position in detector development for the next generation of cryogenic dark-matter axion exper...
to the characterization and development of resonators and cavities for the Fabry-Pérot Axion Experiment (FAxE) and the Relic Axion Detector Exploratory Setup (RADES). In particular, the candidate will study superconducting
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team investigating densely-laden pipe flows. In the project, you will use Magnetic Resonance Imaging and Velocimetry to provide insight into the velocity and concentration profiles. This technique
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. The focus of the THz-Electronics Group is the investigation of THz sources, detectors, and systems, with a special emphasis on the investigation of resonant-tunneling diodes (RTDs) and THz sources based
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University of North Carolina at Chapel Hill | Chapel Hill, North Carolina | United States | 2 months ago
Hill Department of Chemistry Nuclear Magnetic Resonance Laboratory (NMRL) and to provide leadership and direction for research and experiential learning activities involving the NMRL. This position
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University of North Carolina at Chapel Hill | Chapel Hill, North Carolina | United States | about 2 months ago
Hill Department of Chemistry Nuclear Magnetic Resonance Laboratory (NMRL) and to provide leadership and direction for research and experiential learning activities involving the NMRL. This position
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electrochemical experiments and analyse electrochemical data. Apply spectroscopic techniques, including Raman spectroscopy and nuclear magnetic resonance (NMR), to investigate electrolyte structure and properties
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using numerical simulations, experiments data, and field measurements. Analyse the dynamic behavior of modular floating structures, including connector loads, load redistribution, resonance effects, inter
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using finite-nucleus observables, including binding energies, charge radii, giant resonances, and parity-violating electron-scattering data. Particular attention will be paid to the isovector sector
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resonance, spin-Hamiltonians and time-dependent perturbations. Our experiments require hand-on experimental use of optics (e.g. lasers, detectors, lenses, etc.), microwave, RF and DC electronics, magnetic
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for identification and structure confirmation of organic compounds (mass spectrometry, nuclear magnetic resonance, crystallography) c. knowledge of chemical databases and programmes used in organic chemistry (Reaxys