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educational and professional background while expanding knowledge relevant to NASA’s Earth science mission. The participant will research approaches for integrating observations from NASA’s Global Ecosystem
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to improve knowledge of interactions among soilborne pathogens, beneficial microbes, and crops as well as inform non-fumigant methods for sustainable disease management in strawberry and vegetable production
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research that is responsive to Department of Defense and U.S. Army requirements and delivers lifesaving products including knowledge, technology and medical material that sustain the combat effectiveness
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handling large data streams. Build foundational knowledge in AI and machine-learning approaches for predictive modeling in grain-quality assessment. Learn how deterioration in stored grain develops
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agencies, and will gain a broader knowledge of scientific regulation, biosafety and biocontainment, and policy development. You may also be participate with the Policy Team to learn about strategic planning
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in human host), yet many important details of these responses have not been elucidated. The increased knowledge of foodborne pathogen genetic and physiological mechanisms for adaptation to selected
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apply molecular biology concepts to characterize immunoglobulin-E (IgE) binding to food allergens. Learning Objectives: Under the guidance of your mentor, you will: Develop knowledge of the sequence and
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: Sterile technique BSL2 pathogen handling Knowledge of the polymerase chain reaction (PCR) Molarity calculations for solutions Food safety sampling techniques Rapid method development and validation Sample