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Field
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biology for a two-year term with possibility of extension. The successful applicant will train directly under the supervision of Dr. David Granville, PhD, and will have an opportunity to develop
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macrophages to examine their ability to delay autoimmune responses. Perform islet transplantation studies in mouse models of T1D to define optimal transplant sites and the use of accessory cells/therapies
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, construction, and optimization of synthetic biological systems and enzyme engineering workflows. Execute advanced molecular biology techniques, including DNA manipulation, PCR, and molecular cloning. Conduct
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the Principal Investigator or clinical supervisor. Participate in research team meetings to discuss progress, troubleshoot challenges, and optimize trial implementation. Stay current on literature relevant
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part of the research team, focusing on: Developing an IceCube data selection optimized for Galactic plane neutrino source searches. Contributing to the development and application of statistical and
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of manuscripts on newly developed methodologies and their experimental outcomes. Required Qualifications PhD in marine, microbiological, molecular biological, chemical, geological, engineering, or other
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, Bioink/hydrogel formulation, and 3D bioprinting of cells and tissues. - Operate extrusion-based 3D bioprinters independently. - Independently and collaboratively manage the optimization, development
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, develop, and optimize new methods and techniques to address critical project or functional area needs. Participants will improve existing or develop new laboratory methods and processes, read and adapt
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engineering and optimization of novel proteins 2. Extensive characterization of proteins both in vitro and in vivo, including Cryo-EM 3. The use of advanced molecular tool to ex-vivo engineering cells (CRISPR
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behavior of floating breakwaters under varied sea conditions. 2. CFD and Finite Element Modeling • Perform Computational Fluid Dynamics (CFD) simulations to optimize the design and performance of floating