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embedded in a collaborative, international research environment with access to state-of-the-art next generation sequencing and cell culture facilities. Your qualifications Master degree in Molecular Biology
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and next generation sequencing data. Graphical output of data analysis for publication demonstrated experience in statistical analysis and designing computational methods and tools, including prior
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aggregation of toxic proteins in the brain. The proteins tend to have similar sequences and physical properties making them more likely to aggregate. The protein open reading frame 6 (ORF6) from SARS-CoV-2 has
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molecular biology and biochemical techniques such as cloning, in vitro transcription, nucleic acid purification, PCR, next generation sequencing library preparation and immunoblotting. Help prepare data
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-developed knowledge of Australian media and culture. Demonstrate excellent capacity and potential for research. You must develop a research proposal that responds to and aligns with the scholarship topic and
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cytogenetic and molecular techniques, including chromosome analysis, fluorescence in situ hybridization (FISH), chromosomal microarray (CMA), and exome sequencing for diagnosis or treatment in cancer and
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(genome sequencing), bioinformatics and single-cell (microscopy, microfluidics, FACS) analyses of E. coli bacteria and will be centred around the following themes: Pathways involved in robustness against de
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Kerryn Butler-Henderson via kerryn.butler-henderson@rmit.edu.au by 31 October 2022, with: A cover letter - outlining interest and alignment with the proposed research (see Further Information) A copy of
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(Agarwal et al., Quant. Sci. Technol. 2024), so that for any verification approach to be useful it needs to go beyond widely employed Markovianity assumptions. This work, directly aligning with NQTP Missions
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. You will have access to state-of-the-art facilities (e.g., single-cell platforms, sequencing, proteomics and bioimaging) and extensive expertise in functional genomics, single-cell analyses, gene