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Field
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transmission electron microscopy (TEM), atomic force microscopy (AFM), and X-ray diffraction (XRD), etc. Prepare manuscripts, reports, and presentations for internal discussions and external publication
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tissues. · Contribute to a multidisciplinary team encompassing tissue engineering, mechanical design, materials science, and biology. · Conduct cell culture, microscopy, and associated molecular biology
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to: Design, assemble, and align a single‑photon‑enabled scanning microscope; integrate detector modules, synchronization electronics, and time‑tagging workflows. Develop imaging protocols and benchmark
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them The Opportunity Join Monash University, a global leader in advanced electron microscopy and materials research. Based at the Clayton campus, this role is an exceptional opportunity to conduct
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solution chemistry laboratory and equipment usage, Demonstrated ability to use different methodologies in materials characterisation, including transmission electron microscopy, x-ray diffraction, scanning
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, and either flow cytometry or microscopy, or both. The ideal candidate values patience, curiosity, and hypothesis-driven science, and is eager to learn new model systems and/or techniques. High standards
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will work with advanced structural biology and imaging technologies, including single particle cryogenic electron microscopy (cryoEM), cryogenic electron tomography (cryoET), and cryogenic plasma focused
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biology approaches, including single particle cryogenic electron microscopy Analyse data and prepare figures, manuscripts and research reports Contribute to the development of grant applications and funding
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, microscopy imaging, systems engineering, and biophotonics. We are committed to providing all members of our group a collaborative, supportive, and motivating academic environment with abundant opportunities
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Science, Chemistry, Chemical Engineering, or relevant field. Experience morphological/structural techniques for materials characterization. Experience in characterization techniques such as electron