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Field
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Biology or related field; research experience in one or more of the following protein purification, protein-nucleic acid biochemistry, cryo-electron microscopy and/or structural biology; Fluent in
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research projects and over 180 principal investigators pursuing laboratory, clinical, and health services research. The wet lab environment includes several core facilities such as confocal microscopy and
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crosslinking/mass-spectrometry and single particle cryogenic electron microscopy on native or recombinant TZ complexes, you are expected to determine the molecular super-structure of TZ. You will monitor
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systems and techniques including novel mouse models of metastasis, patient-derived samples, in vitro co-culture systems, molecular biology, multi-omics, and advanced microscopy approaches. The Labelle lab
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characterization to evaluate the structural integrity, thermal stability, and physical properties of fabricated composites. This will involve: Microscopy (optical, SEM/EDS) for porosity, carbon-matrix bonding, and
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Knowledge of modern research of concepts and principles of biological systems and data collection/analyses, including: mammalian cell culture, microscopy, gel electrophoresis, flow cytometry, and transfection
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Electron Microscopy (TEM) Is Your profile described below? Are you our future colleague? Apply now! Education · PhD in polymer/rubber chemistry and/or polymer process engineering Experience and skills
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Sciences (deformation mechanisms, diffusion, defects, …) Experience in laboratory mineral analysis and testing, and electron microscopy techniques A track record of publication(s) in the peer-reviewed
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ED data acquisition, analysis and use of in situ liquid and electrochemical TEM experiments, under the supervision of Professor Joke Hadermann. EMAT is one of the leading electron microscopy centers
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ED data acquisition, analysis and use of in situ liquid and electrochemical TEM experiments, under the supervision of Professor Joke Hadermann. EMAT is one of the leading electron microscopy centers