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sensors, RGB/IR cameras, video systems, insect traps, and other devices to build predictive, AI- and machine-learning based models for monitoring grain quality and detecting deterioration due to mold
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. Research Project: Research with select agents and toxins provides important scientific discoveries that have led to improved detection and prevention of human, animal and plant diseases, as
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protein expression and purification, biochemical screening assay development, computational structural modeling, cell-based antiviral validation studies, and exposure to preclinical small-animal research
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, implementation of management treatments, and the use of coding and process-based models to analyze natural resource dynamics. Learning Objectives: Under the guidance of a mentor, you will build experience in plant
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instrumentation, quantitative analysis, and modern modeling approaches that help connect fiber properties to fabric performance. Learning Objectives: Under the guidance of a mentor, you will: Develop
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conducting molecular-based assays such as ddPCR and/or qPCR, and biochemical analyses via chemical extractions and collaboration with unit Chemists. Data collected from these experiments will contribute
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to model fungal population shifts and identify environmental or biological drivers of mycotoxin risk. Collaborating with plant pathologists, microbiologists, chemists, and data scientists to develop
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determined by WRAIR. Stipends are typically based on the participant’s academic standing, discipline, experience, and research facility location. Other provisions may include the following: Health Insurance
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environmental stresses will help food regulators in making science-based decisions and help in the development of more effective intervention technologies to improve food safety and shelf-life. Specific project