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microscope. The Mission: The successful candidate will play a central role in advancing multimodal microscopy, including techniques such as multiphoton and optoacoustic microscopy, to investigate novel
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metabolism. You will: Quantify nucleolar material state using Digital Holographic Microscopy (DHM) in cancer cell panels ± chemotherapeutics (e.g., CX-5461, oxaliplatin) and in engineered optogenetic models
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-motivated candidate with a 1st or high 2:1 degree in Engineering or Physical Sciences or a related science discipline. Prior experience in thin-film deposition, microscopy, spectroscopy, electronics
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, immunofluorescence microscopy, flow cytometry, cancer-immune cell co-culture systems, and xenograft models. Who are we looking for? We are seeking a highly motivated, curious, and ambitious PhD candidate passionate
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early developmental success. You will establish an integrated workflow that combines cryo-electron tomography (cryo-ET), sub-tomogram averaging and expansion microscopy to map/model key sperm structures
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to understand the complex interactions between alloy chemistry, processing, microstructure and performance. The alloy microstructure will be characterised by using advanced high resolution electron microscopy
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via email to oni.scholarship@latrobe.edu.au : current academic transcript including Masters / Honours grades (or note completion date). a statement outlining: - their motivation and suitability
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-resolution confocal microscopy, and high-throughput sequencing technologies. The candidate will have the opportunity to have an attractive 1-year post-doc grant with the possibility of 3 additional years. How
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utilise (where necessary), radioactive materials handling facilities, advanced materials characterisation techniques such as scanning electron microscopy (SEM), Transmission electron microscopy (TEM) and X
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its employees in reconciling work and family life and regularly undergoes the audit berufundfamilie® . Further information at: http://www.ifw-dresden.de . The Institute for Emerging Electronic