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common laboratory equipment (e.g., autoclaves, sterilizers, centrifuges, homogenizers), and gain experience in DNA extraction, PCR amplification, and sequence analysis for Hemileia vastatrix and
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high-accuracy protein models and structural insights. Experience engineering nucleic acid sequences and chemistries to optimize specificity, stability, and delivery to arthropod systems. Expertise in
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plants. The participant will learn and use multiple molecular biology, synthetic biology and plant biotechnology related tools and techniques including plasmid vector design and assembly, plant genetic
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transformative unclassified research that aligns with the strategic interests of the Intelligence Community (IC). To ensure the research agenda remains responsive to the pressing needs of effective intelligence
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, managers, Tribes, and the public. Ability to communicate highly technical information to non-technical audiences. Strong organizational skills and the ability to balance multiple projects simultaneously
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, the participant will analyze and propose engineering solutions to align facility operations with rigorous research requirements, gaining hands-on experience in biosystems engineering, facility
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-basis. FDA Office and Location: Multiple research opportunities are currently available within the Division of Quantitative Methods and Modeling (DQMM) in the Office of Research and Standards (ORS) within
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analysis. Why should I apply? Under the guidance of multiple mentors, you will gain hands-on experience to complement your education and support your academic and professional goals. Along the way, you will
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and analysis of related topic areas for relevant regulations, legislation, executive directives, reports, and other documents for policy implications and alignment with HHS priorities. Supporting
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and investigate the mechanisms underlying key agronomic and disease-related traits across multiple crop species. Research will focus on hemp, onion, tomato, squash, apples, cherries, and grapes, with