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in programming (MATLAB, Python, R) Experience using advanced statistics Ability to build advanced experimental interfaces (using Matlab, Psychopy, JavaScript, etc.) Track record in publishing
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of the cellular localization of B. thetaiotaomicron HTCS proteins. The research will involve both cellular and in vitro studies. In addition to experimental research and contributions to maintaining the laboratory
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of the cellular localization of B. thetaiotaomicron HTCS proteins. The research will involve both cellular and in vitro studies. In addition to experimental research and contributions to maintaining the laboratory
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Department of Molecular Biology & Biochemistry (MBB) at Rutgers University-New Brunswick. Our lab aims to understand molecular mechanisms of antiphage immunity in bacteria and archaea, focusing on the role and
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researcher will be responsible for the design, analysis, interpretation, and presentation of experiments regarding the study of the disease mechanisms of various brain disorders using murine models and iPSC
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to oversee research activities outlined in NSF Grant 2520154 “Understanding Expectation-Driven Learning in Early Childhood: An Experimental and Computational Investigation,” under the supervision of Dr. Kimele
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of the Principal Investigator, the Postdoctoral Associate will be responsible for the design, analysis, interpretation, and presentation of experiments regarding the study of molecular mechanisms of the regulation
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to a research program on star formation, galaxy formation, the interstellar medium, and fluid dynamics. The successful candidate will be expected to work on all or a subset of the above topics, be
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requires being able to design and carry out experiments with the C. elegans model system as well as other experimental systems in the lab such as yeast two hybrid protein-protein interaction methods
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% 1. Research and Experimentation: Conduct rigorous and innovative research in the realm of somatosensorial, emphasizing mouse genetics to uncover genetic underpinnings and molecular mechanisms. 10 % 2