682 molecular-modeling-or-molecular-dynamic-simulation positions at University of Michigan
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interesting and beneficial molecules; synthesize organic compounds; plan and perform molecular biology experiments, including bacterial cell culture, protein expression and purification, PCR amplification, and
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in the position and outline skills and experience that directly relate to this position. Job Summary The Li Lab, now at the University of Michigan, develops innovative molecular and live cell-based
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processing, and correlative molecular studies with pediatric cancer patients receiving active treatment. Uniquely, this position will offer engagement with both labs to achieve multidisciplinary research goals
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. in Cancer Biology or a related field, with a strong foundation in molecular, cancer, and cell biology techniques and principles. A minimum of 2 years of experience working with animal models, such as
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The Department of Molecular, Cellular and Developmental Biology is seeking applications for a 100% LEO Lecturer I position teaching BIOLOGY 172, "Introductory Biology - Molecular, Cellular, and
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The Department of Molecular, Cellular and Developmental Biology is seeking applications for a 50% LEO Lecturer I position teaching MCDB 310, "Introductory Biochemistry." The responsibilities will
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, highly motivated individual for postdoctoral fellow position. The successful candidate is expected to thrive in a fast-paced dynamic environment. In this role, the candidate will work as part of a team
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desired imaging reporters or genes of interest. This person will maintain accurate records of all experiments and procedures. Required Qualifications* B.S. in molecular biology, cell biology, or related
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novel inhibitory/degrader drugs in preclinical models. The individual should be familiar with routine molecular biology techniques and have an educational background in biomedical sciences or related
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hits using in vitro (cell lines, organoids) and in vivo (mouse xenograft/PDX models) systems. They will optimize protocols for NGS library preparation, CRISPR-Cas9 editing, and high-throughput molecular