73 structural-engineering "https:" "https:" "https:" "https:" "https:" "U.S" research jobs at University of Michigan
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team values excellence, integrity, diversity, impact and kindness - and we are looking for postdoctoral trainees who are enthusiastic, creative and experienced in circuit level structure/function assays
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Apply Now How to Apply To be considered for this position please submit the following documents, via this Interfolio link: https://apply.interfolio.com/178111 Applications not submitted through
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Apply Now How to Apply Applications should be submitted through Interfolio at https://apply.interfolio.com/179362 . Only materials submitted through the Interfolio link will be reviewed. Do not
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crisis and create an environmentally sound future for generations to come. To learn more about SEAS and our values, please visit our website at https://seas.umich.edu/about/seas-values . Why Work
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motivated and detail-oriented temporary Research Assistant to join our team. You will work with study coordinators, engineers, scientists, students, and other members of the project team on a project to make
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excellence in education, patient care, community service, research and technology development, and through leadership activities in Michigan, nationally and internationally. Our mission is guided by our
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Apply Now Job Summary We are seeking a motivated temporary Research Assistant to join our team. The work involves construction of biospecimen collection kits that will be shipped to research
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is possible for up to three years, contingent upon satisfactory performance. Job Summary We are looking for a postdoctoral researcher to investigate the interaction between bio-mimetic foot structures
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(e.g., F32, K99/R00) Career Development & Advancement: We are committed to the professional growth of our postdocs. You will have access to: Structured Mentoring: Regular feedback and formal IDP reviews
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perform engineering tasks as a member of multidisciplinary research and development teams designing and investigating new medical devices and restorative technologies, particularly 3D printed microfluidic