32 postdoc-molecular-dynamics-simulation Postdoctoral research jobs at The University of Arizona
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, Molecular Biology, Neurosciences, Biochemistry, or related field. Dissertation must have focused on RNA editing, including the use of long-read sequencing and CLIP-seq technologies. Preferred Qualifications
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of Arizona and relocations services, please click here . Duties & Responsibilities Design, execute, and adapt physiological and cellular/molecular experiments (e.g., surgeries, metabolism assays
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candidates who have experience in 3D printing of soft biomaterials. The applicant is expected to have strong background in relevant biological assays as well as relevant molecular and cellular assays and
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for several tick species to carry and transmit alpha-gal syndrome (red meat allergy). This project has a multidisciplinary approach, integrating approaches with cutting-edge molecular techniques, such as
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units across the University. Utilize molecular biology, biochemical techniques and high-resolution imaging, perform in vitro functional analyses including patch-clamp and calcium measurements. Perform
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at Biosphere 2. Together with an interdisciplinary team of scientists, the Postdoc will develop upscaling methods to estimate ecosystem scale transpiration based on locally observed energy balance partitioning
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) located at Biosphere 2. Together with an interdisciplinary team of scientists, the Postdoc will develop upscaling methods to estimate ecosystem scale transpiration based on locally observed energy balance
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and working experience in molecular biology and cell biology techniques are highly desirable. A background in the field of neuroscience is desirable. Applicants should demonstrate proficiency in spoken
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from antigen presentation, prediction of immunogenic neoantigens, to T cell-mediated control of cutaneous squamous cell carcinoma and melanoma, utilizing immunological, cellular and molecular biological
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Shaowen Bao. The purpose of this position is to conduct investigation of the mechanisms underlying noise trauma-induced neuronal death using advanced molecular, cellular and electrophysiological techniques