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sequence and to model the evolution of body size using bounded evolutionary models. 3) Biomechanical and Hydrodynamic Modeling: Apply computational fluid dynamics to test hydrodynamic hypotheses related
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cancer. The role involves designing and executing complex experimental studies involving drug target evaluation, molecular pharmacology, cell culture models, and in vivo xenografts to evaluate targeted
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preclinical models and retrospective human MTLE datasets. Apply complex signal-processing approaches to analyze animal and human intracranial EEG. Develop and implement computational network analyses
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Experience with computational or simulation modeling methods Experience with complex survey data analytic methods Familiarity with tobacco control and/or cannabis control and/or alcohol control. Strong
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or simulation modeling methods Experience with complex survey data analytic methods Familiarity with tobacco control and/or cannabis control and/or alcohol control. Strong analytic skills. Existing publication
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to investigate how metabolic and molecular characteristics during pregnancy contribute to maternal and offspring health across the life course. Current projects integrate epidemiologic data with metabolomics
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Hours Standard Hours 37.50 Daily Work Shift Work Arrangement Consistent with the current application of Rutgers Policy 60.3.22 or the applicable provisions of relevant collective negotiations agreements
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Consistent with the current application of Rutgers Policy 60.3.22 or the applicable provisions of relevant collective negotiations agreements, this position requires a fully on-site work arrangement and may be
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Hours Standard Hours 37.50 Daily Work Shift Work Arrangement Consistent with the current application of Rutgers Policy 60.3.22 or the applicable provisions of relevant collective negotiations agreements
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or more of the following areas: - Recombinant protein expression and purification. - Biochemical and biophysical characterization of proteins and protein–nucleic acid complexes. - X-ray crystallography and