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Field
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tracers and fluorescence Excitation Emission Matricies (EEM) are advantageous but not a requirement. Experience with fieldwork in remote areas is valued. The position is available from April 2026 or as soon
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complementary experimental approaches to understand the underlying bubble physics. These include ultra-high-speed imaging of bubble dynamics at up to ten million frames per second and laser-induced fluorescence
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cell culture, particularly of human cell lines and hiPSCs. Experience in immunostaining of cells and/or tissues. Experience in confocal fluorescence microscopy. Experience in using liquid handling robots
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fluorescence microscopy and X-ray crystallography. The experimental and theoretical methods used often have their origins in physics. Significant work is devoted to protein self-assembly and co-assembly and
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sustainability. You will focus on processing and analyzing multi-source satellite remote sensing data, such as hyperspectral, multispectral, thermal infrared, microwave, and solar-induced fluorescence, to quantify
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experience in bioinformatic analysis (bulk RNAseq, scRNAseq, proteome) Excellent teamwork and communication skills Solid experience with flow cytometry and fluorescence-activated cell sorting (FACS) FELASA
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including (but not limited to): Develops proficiency in mouse behavior experimentation, stereotaxic surgery and fluorescent in vivo imaging. Collects and processes neuroimaging data with Matlab/Python
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based on particle image velocimetry (PIV), laser-induced fluorescence (LIF), high-speed imaging, and schlieren/shadowgraphy techniques. The resulting dataset will support the development of sea-state
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University of North Carolina at Chapel Hill | Chapel Hill, North Carolina | United States | about 4 hours ago
fluorescence polarization, time-resolved FRET (TR-FRET), FRET, and BRET. Proficiency in biophysical assay platforms, including isothermal titration calorimetry (ITC) and surface plasmon resonance (SPR), is also
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applicant will be working on applying single molecule fluorescence microscopy and super-resolution microscopy techniques to study: i) the interactions between plasmonic metal nanoparticles and fluorescent