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University of California Riverside School of Medicine | Riverside, California | United States | 6 days ago
contacting: aobenaus@medsch.ucr.edu We are recruiting for the following areas: Vascular physiology: This position will use modern in vivo imaging (miniscopes, 2-photon, magnetic resonance imaging
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. The position will include opportunities to collaborate with clinicians and researchers studying neurological disorders, develop methods for longitudinally collected positron emission tomography and magnetic
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-completed PhD with strong background in Materials Science or Physics (within the last 5 years) Considerable experience in understanding magnetic-domain physics in thin film and/or nanostructured materials
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Max Planck Institute for Plasma Physics (Greifswald), Greifswald | Greifswald, Mecklenburg Vorpommern | Germany | about 2 months ago
the island resonance on divertor performance This is your experience You have in addition to a master's degree, also a PhD in physics You have a background in plasma edge physics in magnetically
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like electric field, magnetic field, etc... * Collaborate with team members and users in order to achieve high-impact research works. Required Knowledge, Skills, and Abilities: * PhD. in Physics
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(e.g. texture, magnetic susceptibility, pH, organic matter, CaCO3, phosphorous, electric conductivity, and pXRF). Demonstrable experience in micromorphological analysis of archaeological deposit, ideally
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and ordering materials and supplies for the laboratory. Qualifications: PhD in Chemistry, Biochemistry, Biophysics or a related field by the time of hire is required, along with a strong theoretical or
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science, with ambition to apply their own ideas, perspectives, and their personal skillset to the discovery and development of new 3D nanoscale magnetic metamaterials. We’d like you to be part of the team
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: PhD degree in physics. Experience in experimental research on superfluids. Mastering of micro and nanofabrication techniques. Knowledge of optomechanical and nuclear magnetic resonance techniques is
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Discovery Innovation Network foundation, NNF grant number: NNF23SA0088590. The position focuses on experimental development at the interface of microfluidic organ-on-chip systems and metabolic magnetic