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Field
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spontaneous orbital ferromagnetism. The research will combine advanced sample fabrication, optimization of magnetic sensors, and low-temperature, low-noise measurements of the transport and magnetic properties
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. Experience working in a fast-paced environment. Lab environment. Lifting to 25lbs. Work Environment: Open office environment. Moderate noise and foot traffic. Rutgers University is an equal opportunity
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rotor motor. You will do research on noise and vibration reduction due to the harmonics injected in electric machine due to switching converters. You will use advanced finite element analysis techniques
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of noise. Special Conditions Posting Details Posting Number 26ST0161 Posting Open Date Special Instructions to Applicants Regional Campus Rutgers Biomedical and Health Sciences (RBHS) Home Location Campus
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Utilized Physical Demands and Work Environment Physical Demands: Standing, sitting, walking, talking or hearing. No special vision requirements. Work Environment: Standard lab environment; moderate noise
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holidays to meet strict deadlines. WORK ENVIRONMENT: Office/Clinical/Laboratory environment. Moderate noise. Must be available to work flexible hours, including overtime on short notice and some weekends and
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Max Planck Institute for Multidisciplinary Sciences, Göttingen | Gottingen, Niedersachsen | Germany | 18 days ago
description Single-molecule X-ray scattering experiments with free-electron lasers offer a new route to the structure determination of biomolecules. Due to the super-low signal-to-noise-ratio, computing
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with free electron lasers offer a new route to the structure determination of biomolecules. Due to the super-low signal-to-noise-ratio, computing the structure from such data is challenging, and new
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closed-loop optimization. Benchmark AI-assisted methods against classical control approaches and assess scalability and robustness under realistic noise conditions. 2. Neural Ansätze for Quantum
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(including PAMELA (link is external) , vibrational spectroscopy and cryogenic-EM); (ii) investigations of novel materials and devices at the nanoscale. The chemistry-based subgroup is exploring new and