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electron paramagnetic resonance spectroscopy (EPR) and electrically detected magnetic resonance (EDMR) to probe spin selectivity in photoinduced electron transfer (PET) processes. The post doctoral fellow
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optimisation of single-step magnetic bead-based bioassays, development of paper devices for assay easy handling, and implementation of electrochemical detection using thin-film electrode devices to produce fast
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or familiarity with quantum optics, open quantum systems, (rare-earth) emitter physics. • Experience or familiarity with strongly correlated electron physics, magnetism, or topological phases. • Experience
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funding. You will be responsible for the development of novel acquisition, reconstruction, image analysis and/or modelling methods for cerebrovascular magnetic resonance imaging (MRI) to improve
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for utilizing new ultracold, strongly polar, and strongly polar and magnetic molecules in optical tweezers and lattices to realize a new generation of ultracold molecular qubits and two-qubit quantum gates. In
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effort on dissipation and thermalization in driven systems, photon-dressed states in space- and time-dependent settings, and emergent phenomena in periodically driven two-dimensional materials and magnetic
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states, charge density waves, superconductivity, and quantum magnetism - Kagome materials and superconducting hydrides - Machine learning interatomic potentials (MLIPs) and data-driven atomistic
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including magnet schools and an international baccalaureate program. Learn more about what Gainesville has to offer at Visit Gainesville Expected Salary: The salary is competitive and commensurate with
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collection for plasma biomarker analysis, and functional and structural magnetic resonance imaging. The Fellow will play a key role in neuroimaging data collection, preprocessing, and advanced data analysis
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-technical interlocutors You are proficient in written and oral English (level C1) Knowledge of MRI or magnetic resonance spectroscopy signal processing methods as well as heat transfer mechanisms and