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voltage imaging and targeted optogenetic stimulation in larval zebrafish. The system will combine a high-speed light-sheet microscope, a two-photon holographic stimulation system, and software
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experience in radio data analysis, optical/IR spectroscopy, space-based imaging analysis (optical/X-rays), and other time-domain science are encouraged to apply. Resources include programs with HST, Chandra
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. Specifically, our core technique is scanning electrochemical cell microscopy (SECCM) , a powerful electrochemical imaging method for probing electrochemical processes at nanoscale sites on complex electrodes. We
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experience with bacterial husbandry, cloning, genetics, microscopy/biological imaging and/or protein biochemistry. A strong publication record in microbiology/molecular biology demonstrating these skills is
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time Spectroscopic studies of galaxies and AGN at intermediate to high redshift Analysis of JWST slit and/or slitless spectroscopy datasets and/or JWST imaging datasets Development of methods for large
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, cloning, microscopy/biological imaging, FACS, bioinformatics, and/or protein biochemistry. A strong publication record in relevant fields demonstrating these skills is highly preferred. Additional
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postdoctoral candidates with backgrounds in microbiology and molecular biology. Ideally, the candidate will have experience with bacterial husbandry, cloning, genetics, microscopy/biological imaging and/or