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Field
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) within the NCN OPUS-29 project (OSF registration no. 646959), entitled: “Advanced structural control and long-range organization of magnetic and magnetically doped nanoparticles in liquid crystal systems
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institutional approval) in complex plasma physics, starting in October 2026. The successful candidate will join Dr. Surabhi Jaiswal’s research group focusing on dust-plasma interaction under a high magnetic field
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electrons exhibit a net magnetic moment and serve as the building blocks of molecular quantum devices for next-generation technologies. While both transition-metal and lanthanide complexes can behave as
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the research group of Clifford R. Bowers. This position focuses on the development of parahydrogen-sourced hyperpolarization methodology for nuclear magnetic resonance (NMR) signal enhancement. The successful
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electrons exhibit a net magnetic moment and serve as the building blocks of molecular quantum devices for next-generation technologies. While both transition-metal and lanthanide complexes can behave as
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automated extraction of morphological features (e.g., porosity, tortuosity, connectivity) and fluid flow characteristics from 2D and 3D images resulting from magnetic resonance, X‑ray and electron images
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inorganic materials, including chalcogenides, pnictides, halides, and intermetallic compounds. The position also involves comprehensive structural, optical, magnetic, and electrical characterization
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magnetic bearing for net zero transportation applications. In particular, the role holder will support the hardware development of the magnetic bearing controller. Candidates should hold or be shortly due
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-on experience with analytical techniques such as gel permeation chromatography (GPC), rheology, and nuclear magnetic resonance (NMR) spectroscopy Ability to model Argonne’s core values of impact, safety, respect
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will be involved in quantum sensing experiments (temperature/magnetic field) that may involve novel materials such as point defects in 2D materials (e.g., in hexagonal Boron Nitride and related) and