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Fellowship in the area of Dental Caries and Erosive Tooth Wear. The successful candidate will be responsible for performing and the development of in-vitro models to investigate the remineralization and
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immunology, nanotechnology, materials science, and molecular engineering, bringing together tools such as flow cytometry, animal models, and bio/nanomaterial synthesis. Our long-term goal is to establish
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preparation. DUTIES AND RESPONSIBILITIES: 1. Designing, performing, and/or overseeing experiments and data collection. 2. Conduct a wide range of complex experiments with a degree of independence in conducting
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related dementias. Project Overview Leveraging newly developed brain organoid models, this project will: Utilize human iPSC lines from AD patients to develop multiple tiered brain organoid models
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for data-intensive research and statistical modeling. IU Astronomy has guaranteed access to NEID, the high-precision radial-velocity spectrograph on the 3.5-m WIYN telescope, enabling powerful synergies with
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Vera C. Rubin Observatory’s Legacy Survey of Space and Time (LSST). We especially value candidates with strong technical skills for data-intensive research and statistical modeling. IU Astronomy has
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proteomic techniques as well as human stem cell models. The candidate must be comfortable with advanced molecular biology techniques and bioinformatics. We are seeking a self-directed, self-motivated, curious
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graduate students. Current research areas include: hadronic amplitude analysis and scattering theory, heavy-ion collisions and the properties of hot QCD matter, hadronic probes of beyond-the-Standard-Model
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an NIH-funded project aimed at elucidating the neuroendocrine mechanisms regulating aggression in a rodent model. The successful applicant will join a vibrant lab group using advanced experimental
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Center can be found at https://csennd.iu.edu . The project will focus on developing and applying high-throughput methods for the synthesis and in-depth characterization of complex nanocrystals, with