96 model-driven-development "Integreat Norwegian Centre for Knowledge driven Machine Learning" Postdoctoral positions at Rutgers University
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biology, phage biology, and microbial defense mechanisms. The Semenova laboratory provides a collaborative and supportive environment that fosters scientific independence and career development
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reviews, development of study materials, various data collection activities, preliminary data analysis, and implementation of other activities as assigned to ensure conformance with the project’s goals and
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cancer. The role involves designing and executing complex experimental studies involving drug target evaluation, molecular pharmacology, cell culture models, and in vivo xenografts to evaluate targeted
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have strong programming skills and experience analyzing/modeling the results of human subject experiments. City: Piscataway State: NJ Location: Busch (RU-New Brunswick) Create a Job Match for Similar
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using murine models and iPSC-derived human neurons. The Postdoctoral Associate will perform small animal surgeries, molecular, cellular and electrophysiological experiments. In addition, the Postdoctoral
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candidate will work at the forefront of exoplanet research and will have the opportunities to extract scientific results from multiple JWST programs, develop and apply advanced atmospheric and surface models
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independently. Among the key duties of this position are the following: Designs, discusses, and performs diverse experimental models and techniques related to the study of innate cells. Contributes to general
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Cognitive Neuro-Psychiatry in University Behavioral Health Care. The primary purpose of the Postdoctoral Associate is to contribute to ongoing projects and have the opportunity to develop independent research
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. A full-time Postdoc position is available in the lab of Dr. Devanshi Jain in the Genetics Department at Rutgers University, New Jersey. We study germline development, specifically molecular mechanisms
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focuses on investigating how biomedical implant degradation products modulate host immune responses using advanced cellular and murine models. The overarching goal is to develop novel therapeutic strategies