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development and optimization. The tumor microenvironment and mechanisms of immune evasion. Development of innovative technologies to enhance anti-tumor immune responses. The role of epigenetic and RNA
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antimicrobial interventions. Develops, validates, and optimizes innovative food safety technologies and methods for farm to fork applications. Analyzes microbial responses to environmental stress and
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challenges, including data analysis, hypothesis generation, and experimental design optimization. We seek a highly motivated postdoctoral candidate with expertise in AI, machine learning, and computational
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or potentially could affect the project goals and workflow. Optimize protocols and improve methods currently employed. Coordinates work consistently to achieve maximum productivity. Demonstrates
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: Follows NIH Postdoctoral guidelines and comprehensive benefits Start date: As soon as possible Core Responsibilities Develop and optimize protein purification protocols for key stress response factors
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vehicles. You will work with dynamic teams in multi-organizational consortia and carry out research activities focusing on synthesis, characterization and optimization of advanced cathode materials
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been extensively studied in game theory, reinforcement learning, and optimization, their full integration into modern AI systems (particularly in multi-agent deep learning and human-AI collaborative
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to ensure optimal orchestration of scientific information to key stakeholders Qualifications Doctor of Pharmacy degree from an ACPE-accredited institution Eligible for pharmacist licensure in the State
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congress and information booths · Contributing to the execution of omnichannel and digital strategy within Medical Affairs to ensure optimal orchestration of scientific information to key stakeholders
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to optimize scientific quality/innovation of clinical study design, execution, reporting and publication. · Contribute to trial-related advisory boards. · Participate in investigators meetings and