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for mechanistic analysis of meiotic crossover interference and high resolution imaging of single molecule dynamics of chromosomes Basic Qualifications expertise in high resolution imaging, knowledge of mitotic
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immunofluorescence and antibody validation Immunofluorescence staining of tissues, microscopy, image analysis Contribute to general lab tasks Maintaining accurate and detailed records of experiments Basic
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computing applications—mainly for a SWaP-constrained AV—using hybrid electro-photonic accelerators. We propose to design and prototype a complete electro-photonic computing (EPiC) system (CPUs + accelerators
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resolving problems associated with each system consistent with recognized trade practices, industry standards, codes/jurisdictional authorities, and University guidelines/practices. Must maintain work area
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scientific, image editing, word processing, spreadsheet, or statistical software applications or program platforms; 4. Assists in the design of laboratory experiments, techniques, and protocols; 5
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resource for University electricians on interpretation of codes and regulations; coordinates permit applications for Campus Services; ensures code compliance. Issues periodic reports of maintenance work
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assays. Experience working with bone marrow transplants in mice is required. Good understanding of T-cell lineage and associated assays including TREC. Bone tissue image analysis – microCT and histology
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-solving. Ability to see the "big picture" while managing details and multiple priorities. Experience working in a complex, matrixed environment or with cross-functional teams with tight deadlines
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customers. Special Requirements: Must observe and comply with all standard safety codes and practices, perform work in accordance with recognized trade and University standards Must supply a complete set of
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at Harvard, including operating and optimizing the imaging pipeline, developing high-throughput quality control workflows, as well as performing downstream data analysis. The imaging pipeline involves a custom