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-electron microscopy–based approaches. More information about the laboratory can be found at: https://www.cryo-em.psu.edu/ . The postdoctoral scholar will contribute to ongoing projects to define structural
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ellipsometry, atomic force microscopy, and scanning electron microscopy is required. Knowledge of atomic layer deposition and materials for energy storage applications is highly desirable. The successful
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using in-situ and ex-situ electron microscopy and x-ray techniques; Synthesis and characterisation of lithium alloy anodes and interlayer • You will have significant experience in managing your own
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microscopy methods (darkfield, photothermal, ultrafast, interferometric), electron microscopy, machine learning and other advanced statistical methods. Required Application Materials Cover letter, curriculum
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techniques (Western blotting, PCR, proteomics) ocular perfusion techniques (iPerfusion 3) imaging (confocal, electron microscopy, microCT, histology) Experience in all of these areas is not required, however
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proteins, are strongly encouraged to apply and will be treated as a priority. Cultivation of anaerobic microbes and skills in cryo-electron microscopy are welcomed but not mandatory. Interest in
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THIS VACANCY IS OPEN TO INTERNAL APPLICANTS ONLY About us: The School of Neuroscience is UK’s 2nd largest Neuroscience school with over 500 researchers and 200 PhD students. It is one of three
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particles or single-crystal electrodes. Experimental experience in the preparation of particles using electrodeposition methods (e.g., pulsed electrodeposition). Experience in the use of electron microscopy
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. The project is highly interdisciplinary spanning advanced microscopy, gene regulation, active matter physics, and computational biology. The post doc will: Explore the role of known gene-regulatory mechanisms
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: bacteriology, fluorescence microscopy, electron microscopy, antibiotic assays, biochemical purifications, biochemical assays such as binding assays and protein gel electrophoresis, as well as analytical methods