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We are seeking a highly motivated and dynamic postdoctoral candidate, who is enthusiastic about neural dynamics and sensory processing. The focus of our research is how the combination of sensory
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biochemistry to join a newly funded GPCR collaborative project to investigate the structural dynamics of GPCRs and their signaling partners using biophysical methods, including single-molecule FRET (smFRET
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receptor signaling. Our lab uses a variety of biophysical techniques to characterize protein structure and dynamics in these studies, notably continuous-wave and pulsed EPR methods such as DEER spectroscopy
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natural products for further investigation. The candidate will assist in the isolation and purification of natural products and the subsequent structural elucidation using NMR. When beneficial, chemical
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focus on charge injection, ion transfer, and structural dynamics in realistic and model systems for battery materials. The position will span experimental efforts at large scale X-ray facilities, handling
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. SOT-MTJs offer compelling advantages similar to SRAM, including ultra-fast dynamics (sub-ns), exception-al endurance (>1014 cycles), and low power operation (sub-pJ). A critical challenge in SOT-MRAM
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-free solvents. Thermodynamic modeling studies will be used to determine the choice of solvents. The structural properties and magnetization dynamics will be measured by ferromagnetic resonance. The final
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We have an exciting position for a curious post-doctoral researcher with expertise in community dynamics modelling, to contribute to our research on the effects of climate warming on aquatic food
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theoretical and practical experience with machine learning methods, especially for training of machine learning potentials - development and utilization of ab initio electronic-structure methodology - previous
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Investigate how dynamic stimuli manipulate catalyst electronic properties, and how these stimuli can manipulate catalytic elementary steps and reaction outcomes Perform detailed in situ / operando studies