18 density-functional-theory-molecular-dynamics Postdoctoral positions at Brookhaven Lab
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facilities (such as the Spallation Neutron Source at Oak Ridge National Lab). We also work closely with other groups within CMPMSD with expertise in crystal growth, bulk and transport measurements, x-ray
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or heterogeneous catalysis of small molecule activation. Density functional theory applications to transition-metal containing molecular complexes. Hybrid quantum mechanics/molecular mechanics (QM/MM) methods
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the complex mechanisms that plants use to produce oils and other bioproducts and to defend themselves from disease. We leverage the unique capabilities of Brookhaven’s National Synchrotron Light Source-II
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whole plant assays, cell culture, and molecular biology techniques. Proven record of research publications in peer-reviewed journals. Strong communication skills with the ability to work collaboratively
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. The realization of this facility is a top priority for the QCD community in the United States. The BNL EIC group has played a major role in developing the EIC’s scientific case, building detector subsystems, and
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quality single crystals of quantum materials and study them with transport and advanced electron microscopic methods. These experiments will be integrated in a dynamic team environment, including
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microscopy, modeling, materials theory, and nanofabrication. • You will carry out impactful nanomaterial research, publish papers, and give external presentations on your work. Position Requirements: • You
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and simulation code BMAD. Essential Duties and Responsibilities: As part of a small team, optimize the electron beam spin polarization of the ESR by minimizing depolarizing effects through analytical
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issues. Position Description The position will support the operation and continued development of a center for high throughput x-ray crystallographic fragment screening (XCFS). The successful candidate
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and synchrotron radiation, with the goal of informing component design, shielding, and electronics protection strategies. The successful candidate will work closely with the beam optics, lattice, and