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protocols including digital PCR (dPCR), multiplex PCR, automated nucleic acid extraction, and microbial community analysis (metagenomics/bioinformatics). The participant will also have the opportunity to be
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Sample Collection and Analysis: The participant will be trained in the collection, processing, and analysis of crop and soil samples using advanced microbiological, molecular biological, and chemical
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live wildland fuel characteristics in the field and in the laboratory. These measurements will include: live fuel moisture content, specific leaf area, relative water content, crude fat analysis, non
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journals. The participant will be involved in the design of field trials, planting field trials, superimposition of stress factors, collection and analysis of visual and proximal-sensing data
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grain quality and hessian fly resistance. Conduct genetic and genomic analysis to identifying the quantitative trait loci (QTL) associated the drought tolerance, crown rust resistance and other important
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phytochemicals, including extract preparation, chromatography, and bioassay-guided fractionation in collaboration with chemists. Data analysis and interpretation, including statistical evaluation of dose–response
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, calibration strategies, and data analysis for semi-volatile compounds. The participant will contribute to a collaborative research program focused on understanding the dynamics of off-flavors in salmonid
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document historical topics related to AFRL. The Air Force Research Laboratory History Office provides research, analysis, and written products to the leadership of AFRL and higher United States Air Force and
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flood-induced resistance. Learning Objectives: The participant will expand their skills in plant metabolite analysis, plant genetics, and plant stress biology. They will also receive mentoring in writing
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and/or extracts, bioinformatic analysis to identify putative functions in bacteria and yeasts, and texture measurements on vegetable tissue. The candidate will participate in data collection and