26 postdoc-signal-processing Postdoctoral positions at The University of Arizona in United-States
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. Carry-out analysis of research samples using advanced techniques and validate the measurements. Document, process and analyze research data. Disseminate research results through publishing papers and
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therapies with in vitro cell culture studies and in vivo animal models. Carry-out analysis of research samples using advanced techniques and validate the measurements. Document, process, and analyze research
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therapy–induced cardiac toxicity, with a specific focus on DNA damage response (DDR) signaling pathways. The ideal candidate will have demonstrated expertise in DNA repair mechanisms, radiation biology, and
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Exempt Full Time/Part Time Full Time Number of Hours Worked per Week 40 Job FTE 1.0 Work Calendar Fiscal Job Category Research Benefits Eligible Yes - Full Benefits Rate of Pay NIH Postdoc Salary Scale
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students. FLSA Exempt Full Time/Part Time Full Time Number of Hours Worked per Week 40 Job FTE 1.0 Work Calendar Fiscal Job Category Research Benefits Eligible Yes - Full Benefits Rate of Pay NIH Postdoc
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School of Natural Resources and the Environment at the University of Arizona seeks a Postdoctoral researcher to contribute to our project to understand the plant, microbial, and abiotic processes
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and its response to H2 emissions. The postdoc will generate critically needed H2 soil measurements at two National Ecological Observatory Network field sites and lead data interpretation including
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Postdoc Research Scholar position requires a highly motivated and dynamic scientist with a doctoral degree in Physics or Chemistry, preferably with a strong publication record. Outstanding UA benefits
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validation to improve understanding and prediction of subsurface processes. Outstanding UA benefits include health, dental, vision, and life insurance; paid vacation, sick leave, and holidays; UA/ASU/NAU
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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