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Field
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across UChicago to ensure academic rigor and institutional alignment. Translates the growth strategy and program priorities set by the Executive Director into detailed program plans and execution, and
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USDA-ARS Molecular Biology Postdoctoral Fellowship in the Natural Products Utilization Research Unit
involving physiological, biochemical, and molecular experiments and the use of numerous techniques such as RNA-seq, data mining of DNA and protein sequence databases, analysis of gene function via CRISPR/Cas
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infrastructures and a vibrant international scientific community. About the project Repeat sequences are widespread in genomes and inherently unstable; changes in nucleotide repeat length that result in expansions
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couplers, and packaging interfaces using commercial photonic design tools. Perform optical simulations and tolerance analyses to optimize coupling efficiency, bandwidth, alignment tolerance, and packaging
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studies, animal models, organisation and management of research data, and integration of results across multiple study components. The successful candidate will contribute to data analysis, interpretation
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limited to: Whole-genome sequencing and single-cell sequencing analysis of tumor samples Studies of resistance to existing and emerging cancer therapies using patient-derived data Studies of patient samples
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precision. Second, we must understand what to write - determining which DNA sequences will generate biological systems that perform the desired functions. Addressing these challenges will allow us to harness
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precision. Second, we must understand what to write - determining which DNA sequences will generate biological systems that perform the desired functions. Addressing these challenges will allow us to harness
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precision. Second, we must understand what to write - determining which DNA sequences will generate biological systems that perform the desired functions. Addressing these challenges will allow us to harness
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precision. Second, we must understand what to write - determining which DNA sequences will generate biological systems that perform the desired functions. Addressing these challenges will allow us to harness