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Field
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will involve designing beam dynamics experiments, measurement, simulation, and data analysis. This position resides in the Accelerator Physics Group in the Accelerator Science and Technology Section
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multiscale simulation methods for quantum mechanical properties of macromolecules, developing novel ways to combine quantum chemical methods and machine learning, developing quantum algorithms
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dosimetry. The simulation includes dose deposition and analysis under a phantom system and compares the simulated results with already developed new generation dosimeters used under treatment planning systems
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of responsibility are: 1. Barrel Hadron Calorimeter Group : This includes work on the UNH test stand and commissioning of the detector, encompassing both simulation and hardware development. 2. Polarized Deuteron
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for construction operations. The successful candidate will contribute to cutting-edge research in mixed reality (MR)-based simulation platforms, machine learning-based process optimization, and human-machine
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Postdoctoral Research Associate - Improving Sea Ice and Coupled Climate Models with Machine Learning
). When applied online to global ice-ocean simulations, this neural network substantially improves sea ice simulation performance (https://doi.org/10.1029/2023GL106776 ). The successful applicant
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astrophysical free boundaries. Responsibilities include running high-resolution GPU-accelerated simulations on exascale computing systems, developing and applying geometric measure theory tools to quantify
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understanding of geomagnetic field evolution across different timescales, including both stable and extreme periods. This will involve working with data-based models and numerical dynamo simulations
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will work with a multidisciplinary team of simulation, design, and technology authorities, and should have a clear passion for R&D and a commitment to fostering team growth. Job Duties and
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the BL3 DAQ, running and tweaking Monte Carlo simulations for Nab and BL3, finishing timing studies in Nab using external fast scintillators, and supporting integration efforts of the BL3 DAQ with