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molecular dynamics, docking (e.g., IFD), metadynamics, and free energy perturbation (FEP) techniques. Construct and contribute to the development of software tools for simulation and analysis. Integrate and
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improving yields and sustainability. The successful candidate will focus on the dynamic organization of chloroplast pathways in response to environmental stimuli (e.g., high-light stress and nutrition stress
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, and evaluation The ideal candidate will lead their own project, and also collaborate with and support 1-2 PhD students on their projects. The ideal candidate will also be interested in learning to write
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in catalysis, energy, and sustainability. One of the major interests of our group is in developing functional materials for applications focused on gas storage and molecular separations, which have the
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dynamic and collaborative team of researchers, we encourage you to apply. We offer flexibility in the research topic for these postdoctoral positions. Our current research interests in the group cover a
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microfluidics channels experimentally. The particle dynamics under solute concentration gradient will be analyzed and new methods of manipulating particles in complex geometries will be developed. Application
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disseminating results via conferences, talks, and first-author manuscripts. Experience in some of these methodologies is required. Qualifications: Applicants should have a PhD degree (or PhD candidates in
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diseases. Example projects include assessing drivers of global infectious disease dynamics and developing short- and long-term forecasts for those diseases, with a focus on arboviral diseases (e.g., dengue
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junior-level researchers in the laboratory. Qualifications A PhD degree with a focus in pharmaceutics, pharmacokinetics, pharmacology, biomedical or chemical engineering, or other related field. Hands
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. Postdocs also have opportunities to work with Northeastern’s centers for student and faculty advancement, including the Writing Center, PhD Network, Digital Integration Teaching Initiative, Center