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mathematical approaches, tools, and technologies at the interface with chemistry on one of the following themes: - modeling of quantum effects to gain a detailed understanding of chemical reactivity, - synthesis
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of the Italian language; PhD in Materials Engineering or equivalent qualification demonstrating proven experience in: advanced mechanical characterization of polymers and composite materials, with particular
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bacterioplankton in carbon cycling. Focus will be on deciphering the genetic basis for utilization of monomers and polymers of important dissolved organic matter compound classes (e.g. carbohydrates and proteins
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mechanics are encouraged to apply. Candidates with research emphasis and interests in the areas of space systems and propulsion, hypersonic systems and modeling, and autonomous aerospace systems
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biophysics/chemistry/physics and related fields Experience with Molecular Dynamics using coarse grained or atomistic models Advantage is experience with simulations of disordered proteins/polymers and
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: 10.1038/s41467-023-39181-2 Research area: Computational biophysics, drug delivery, protein design Keywords:Computer simulations, coarse-grained model, molecular dynamics, membrane fusion, fusion protein
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at any research group connected to the Nano Area of Advance at Chalmers. You find the full list of PIs of these research groups on the Chalmers homepage: https://www.chalmers.se/en/collaborate-with-us
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appointment in Pullman, WA, with a specialty in the in the areas of nanomedicine, targeted drug delivery, and polymer/dendrimer chemistry. The Sharma lab is developing rationally designed, smart, clinically
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Scanning Calorimetry (DSC), High-Performance Liquid Chromatography (HPLC), and related techniques. Demonstrated ability to prepare, process, and analyze polymer samples. Familiarity with experimental design
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, assessment of the synergistic effects of anticancer drugs on glioma cells cultured on elastic and viscoelastic 2D hydrogels, evaluation of the therapeutic efficacy of anticancer drugs using xenograft models