148 computer-programmer-"https:"-"IDAEA-CSIC" "https:" "https:" "https:" "Dr" "UCL" "UCL" "UCL" Postdoctoral positions at Rutgers University
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mathjobs.org and complete the application, with the requested supporting documents, for position PD25 under the Rutgers University-New Brunswick listing (https://www.mathjobs.org/jobs/list/25895 ). Rutgers
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Demands and Work Environment Overview Statement Posting Details Special Instructions to Applicants Quick Link to Posting https://jobs.rutgers.edu/postings/256244 Campus Rutgers University-New Brunswick Home
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voluntary tax-deferred savings options Employee and dependent educational benefits Life insurance coverage Employee discounts programs For detailed information on benefits and eligibility, please visit: http
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job applicant at mathjobs.org https://www.mathjobs.org/jobs/list/27217and complete the application, with the requested supporting documents, for position PD26 under the Rutgers University-New Brunswick
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, qPCR thermal cyclers, and computers. Physical Demands and Work Environment Be capable of working in a biosafety cabinet for several hours in a seated position. Overview About the Herbert and Jacqueline
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. Effective spoken and written English required. High level of computer literacy required. Experience in chromatography (including FPLC and preferably including HPLC) and electrophoresis required. Experience in
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people's lives. Connections working at Rutgers University More Jobs from This Employer https://main.hercjobs.org/jobs/21964414/postdoctoral-associate-neurotoxicology-and-parkinson-s-disease Return to Search
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generate ideas for improving people's lives. Connections working at Rutgers University More Jobs from This Employer https://main.hercjobs.org/jobs/21931892/robert-curvin-postdoctoral-associate-in-urban
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provides insights into disease mechanisms, ranging from neurodegeneration to cancer. Statement Below are examples of our recent research contributions. Please visit our lab website at https
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, the Postdoctoral Associate will investigate hippocampal and cortical circuits during navigation and goal-directed behaviors using large-scale electrophysiology, in vivo imaging, optogenetics, and computational