285 computer-programmer-"IMPRS-ML"-"IMPRS-ML"-"IMPRS-ML" positions at University of Kansas Medical Center in United States
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Project Eagle is an early childhood program focused on preparing children, engaging families, and promoting excellence for children and families in Kansas City, Kansas. Project Eagle provides home-based and
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after 12 months of employment. A retirement program with a generous employer contribution and additional voluntary retirement programs (457 or 403b) are available. https://www.kumc.edu/human-resources
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interacting with multidisciplinary teams including physicians, administrative staff to assist in the meeting of the goals and objectives of the program or project are met. Experience applying knowledge
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of clinical trial activities within the Neuromuscular Disease Program. Through careful and well-planed methods, this position ensures that study procedures follow the sponsor's protocol and all applicable
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available after six months of employment, and paid time off for bereavement, jury duty, military service, and parental leave is available after 12 months of employment. A retirement program with a generous
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available after six months of employment, and paid time off for bereavement, jury duty, military service, and parental leave is available after 12 months of employment. A retirement program with a generous
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of employment, and paid time off for bereavement, jury duty, military service, and parental leave is available after 12 months of employment. A retirement program with a generous employer contribution and
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available after six months of employment, and paid time off for bereavement, jury duty, military service, and parental leave is available after 12 months of employment. A retirement program with a generous
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Eagle: Project Eagle is an early childhood program focused on preparing children, engaging families, and promoting excellence for children and families in Kansas City, Kansas. Project Eagle provides home
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research program seeks to increase our understanding of the immunological and molecular mechanisms involved in autoimmune dysregulation in Type 1 diabetes (T1D). Through the use of novel murine models