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on two types of phenomena: (i) Charge Density Wave (CDW) order in magnetic, lanthanide-based MOFs and (ii) electride-like, quasiatomic electron states that reside in the pores of certain MOFs. The aim
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University of North Carolina at Chapel Hill | Chapel Hill, North Carolina | United States | 1 day ago
advanced magnetic resonance imaging techniques at 3T and 7T for imaging the visual system, including the retina, optic nerve, or brain. MRI techniques to assess blood flow, function, diffusion, and CSF flow
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on two types of phenomena: (i) Charge Density Wave (CDW) order in magnetic, lanthanide-based MOFs and (ii) electride-like, quasiatomic electron states that reside in the pores of certain MOFs. The aim
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will lead and/or contribute to numerous preclinical research projects focused on the development of novel molecular magnetic resonance imaging (MRI)-based techniques for early detection, disease
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with two new cryostats ranging from room temperature to millikelvin and can reach large magnetic fields. Our expertise lies in electric, thermoelectric, and thermal experiments for studying quantum
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, and interface structure determination with x-ray diffraction/scattering/spectroscopy, transport and magnetic property characterization using Quantum Design’s MPMS/PPMS and dilution refrigerators
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, and interface structure determination with x-ray diffraction/scattering/spectroscopy, transport and magnetic property characterization using Quantum Design’s MPMS/PPMS and dilution refrigerators
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forms of electronic and magnetic structure theory and calculations is also expected. The successful candidate will have a strong research and publication record and must have a Ph.D in physics or related
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at Northeastern’s Innovation Campus at Burlington, MA. The PRAs will be closely involved in exciting research on various theoretical aspects of molecular magnets, oxide coating materials for the LIGO scientific
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medicine in depression. Especially sought are candidates with expertise in functional magnetic resonance imaging (fMRI), with a particular interest in using brain circuit biotypes to guide personalized