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electronic test and measurement equipment, investigation of transient electrical behaviour, comparison of different device designs and fabrication variants, and support for the evaluation of device performance
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with multiple labs in DHVI and beyond to apply insights from structural biology to vaccine design. We have state-of-the-art facilities that include tissue culture labs, FPLCs, X-ray crystallography
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interdisciplinary scientific experience. Our approach integrates cutting-edge tools and technology, empowering researchers to push the limits of knowledge and innovation. With us, your curiosity will know no bounds
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flow cytometry or FACS as well as basic research histology and microscopic technique are strongly encouraged to apply. General Responsibilities As a Researcher, you will play a key role in driving
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position demands a high degree of expertise and judgement in designing studies, analyzing data, and may involve assistants in publishing findings. You will collaborate with cross-functional teams, manage
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-dimensional microscopic imaging of the brain at the microcircuit level, and is supported by multiple active federal awards in neuroscientific research. The department also sits within a broader collaborative
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Facility, which provides three-dimensional microscopic imaging of the brain at the microcircuit level, and is supported by multiple active federal awards in neuroscientific research. The department also sits
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the brain samples for downstream imaging and atlas mapping. Imaging is anchored by the NIH-funded Imaging & Behavioral Neuroscience (IBN) Core Facility - whole-brain 3-D microscopic imaging