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Field
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, the postholder will integrate isotopic datasets with acoustic, molecular and environmental observations to generate new insights into predator-prey dynamics and climate-sensitive indicators of ecosystem function
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solver who wants to be part of a dynamic team. Learn more about the innovative work led by Dr. Don Ingber here: https://wyss.harvard.edu/technology/human-organs-on-chips/ What you’ll do: Independently
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. Qualifications: Familiarity with machine learning interatomic potentials, CPU and GPU parallelization, knowledge of LAMMPS and molecular dynamics, experience with first principles calculations of dielectric and
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missing physics rules to interpret experimental observations. The GLYCOCALYX Network will train 15 PhD Fellows in chemistry, physics and biology methods and concepts required to resolve the dynamic
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solver who wants to be part of a dynamic team. Learn more about the innovative work led by Dr. Don Ingber here: https://wyss.harvard.edu/technology/human-organs-on-chips/ What you’ll do: Independently
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modeling and simulations, including density functional theory (DFT), molecular dynamics (MD), or ab initio molecular dynamics (AIMD), to investigate polyamide interfacial polymerization, interfacial
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the local molecular composition and transient interactions of molecules within glycocalyces, and missing physics rules to interpret experimental observations. The GLYCOCALYX Network will train 15 PhD Fellows
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about the Systems Chemical Biology of Infection and Resistance Lab About you Essential: (Minimum criteria*) PhD (or near completion) in biological engineering, chemistry, chemical biology, molecular
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physics, physical chemistry, computational chemistry, statistical mechanics, or related fields Experience with molecular dynamics simulations (with GROMACS, OPENMM, LAMMPS, NAMD, AMBER, etc
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translational science, leveraging molecular, cellular, and animal model systems as well as patient-derived samples to uncover mechanisms of disease heterogeneity and progression and identify novel therapeutic