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Center. The broad areas of interest in Dr. Trinh's lab include: gene regulation by RNAs and proteins, modulation of gene-specific chromatin architecture, blood development, cancer and genetic diseases
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approaches for important questions in neuroscience. We have multiple current and incoming NIH projects to establish cellular cell type architecture maps of mammalian brains using mice as an animal model. Three
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and AI-driven computational approaches to reconstruct and redefine tissue architecture in 3D space. The goals of these projects are to uncover the rules governing the spatiotemporal dynamics of tumor
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-controlled devices, etc.). The primary function of this position is to conduct research regarding the molecular architecture of the HIV virus in the group of Prof. Juan R. Perilla (http
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the U.S. DOE Weatherization Assistant Program and the weatherization network by developing tools and resources for building energy audit and health and safety assessment; providing training and assistance
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postdoctoral Researcher who is willing to embrace new approaches for important questions in neuroscience. We have multiple current and incoming NIH projects to establish cellular cell type architecture maps
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, and academic and agency researchers, to help identify a data-sharing architecture (“database ecosystem”) suitable for use in the Great Lakes Basin. A potential need to conduct structured or semi
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architectures and training algorithms, uncertainty quantification, high-dimensional stochastic systems and high-dimensional partial differential equation systems. Multiple positions available. About the T-5 Group
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Laboratory, NY. We are looking for a post-doc broadly interested in studying biological information processing from an algorithmic perspective. The goal is to discover new ideas for computation by studying
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research in several important national and global areas for the betterment of humanity. Areas of research include power and power electronics, information systems, computer architecture, analog and mixed