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of Chemistry and Biochemistry at The Ohio State University. The postdoctoral researcher will perform independent experiments in single-molecule and single-particle optical spectroscopy, centered around the
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strong background in shape modelling, deep generative modelling (diffusion/transformers), or multimodal representation learning. You have strong programming skills, especially in Python, and preferably
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readout. o Integration of optical tweezers, cavity QED systems, or quantum sensing technologies. · Technical Development: Innovate in vacuum systems, laser stabilization, and real-time control software
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techniques such as cryo-electron microscopy, tomography, kinetic assays, and computational analysis. Day-to-day work will include experimental design, data collection and interpretation, close collaboration
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Denmark with the title “Medical breakthrough and financial punishment”. About the research project The introduction of new medical technologies raises questions on the drivers behind their diffusion and
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-, T2-weighted MRI, diffusion-weighted imaging) Programming experience (e.g., MATLAB or Python) Demonstrated trajectory toward applying for an NIH K-award within two years of appointment Special
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and validating scattering‑correction and calibration workflows that yield quantitative attenuation coefficients, and (2) designing adaptive tomography approaches that reduce acquisition time while
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modeling and characterization for communication and sensing in emerging spectrum for 6G and beyond, with a focus on the FR3, THz and optical frequency bands. This research will be conducted under the joint
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environments. Experience with mineralogical characterisation techniques such as optical microscopy, Raman spectromicroscopy, or similar methods is required, along with basic coding skills. You should be able
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Africa, developing comparative insights and policy blueprints to inform wider global diffusion. This role combines rigorous academic research with high-level policy engagement. You will publish in leading