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across all aspects of medicinal chemistry, including: Designing, synthesizing, and optimizing molecules targeting GPCRs (cannabinoid receptors; allosteric and orthosteric) and ion channels (42 nAChR
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: Designing, synthesizing, and optimizing molecules targeting GPCRs (cannabinoid receptors; allosteric and orthosteric) and ion channels (α4β2 nAChR, α7nAChR, α9* nAChR, GIRK1/2, GIRK1/4, etc.) Conducting
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across diverse disciplinary discourse communities. As members of our collaborative Writing Program, Postdocs may participate in activities that support their teaching, research, and professional
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existing and new computational methods to study multiscale processes in catalysis and photochemistry. Other projects that align with our general interest are also possible. Please see https://sdonglab.org
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research statement, along with the names, affiliations, and email addresses of two reference writers. Applicants should ask each reference writer to email a letter of reference directly to postdoc-hiring
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selection and optimization Evidence of scientific engagement and emerging thought leadership in Quantitative Clinical Pharmacology and Pharmacometrics. Quantitative Systems Pharmacology (QSP) Candidate PhD in
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About the Opportunity This job seeks a postdoc to work on one or more projects related to the development and assessment of wearable robotics. Possible projects topics include: Developing machine
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chloroplast protein-protein interactions network (Wang et al., Cell 2023; Wang et al., in preparation for submission). Qualifications: The ideal postdoc candidate must have a Ph.D. in plant science, molecular
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application of modeling and simulation (M&S) strategies to support: PK/PD analyses, Exposure–response characterization, Dose selection and optimization Evidence of scientific engagement and emerging thought
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About the Opportunity The Postdoc will be working on multidisciplinary research projects in the Bendable Electronics and Sustainable Technologies (BEST) Group led by Prof. Ravinder Dahiya. BEST