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University of California, San Francisco | San Francisco, California | United States | about 2 months ago
allocations, workflow sequencing, and laboratory timelines, supporting multiple investigators and multi-project laboratories Academic knowledge and skills dependent on area of specialty (laboratory research
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Registrar teams, functional leads, and academic stakeholders to interpret complex program rules, configure audit logic, validate outcomes, and ensure alignment with institutional governance and published
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operates in a complex, high-availability environment supporting diverse academic, clinical, and research stakeholders across multiple sites and operational contexts. Work regularly involves non-routine
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by envisioning, developing, planning, monitoring and controlling processes involved in alignment with strategic priorities. This role is responsible for budget preparations, setting deadlines
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aligned health care programs, and nationally recognized programs in the marine sciences, the natural and social sciences, business, the humanities, and the arts. Benefits Overview Multiple health and dental
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) openings. This year-long sequence comprises three courses, BIOL 232, 233, & 234 (total of 15 credits, 5 credits per quarter), which is required for most health science majors. In collaboration with
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, basic bioinformatics, including BLAST searching, DNA sequence alignments, and primer design. The work will be planned and conducted in close coordination with senior research scientists, postdoctoral
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includes excellent healthcare, retirement plans, tuition assistance, paid time off, and a winter recess. POSITION OBJECTIVE The objective of the position is to provide metagenomic sequence processing
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modernised IT infrastructure aligned with UNSW’s Technology Strategy and engineering standards. The role ensures strategic alignment, enables capability, transforms operations, and realises program benefits
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advanced genome-editing tools. In parallel, we develop in-house sequencing technologies to dissect epigenetic and epitranscriptomic modifications at the molecular level, along with high-throughput platforms