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Field
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potential applications of SEM and TEM in the analysis of nanomaterial morphology; have knowledge of material surface chemistry, the stability of colloidal systems and nanomaterial functionalisation; be
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of the following institutions/organisations: Max Planck Institute of Colloids and Interfaces (DC1); Leibniz Institute for New Materials (DC2, DC3, DC15); Stockholm University (DC4, DC13); Basque Center for Applied
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quantitative and analytical skills, incl. programming (Python, MATLAB, or similar) Experimental laboratory experience in drug formulation, nanoparticle/microbubble synthesis, colloid chemistry, or related fields
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/organisations: Max Planck Institute of Colloids and Interfaces (DC1); Leibniz Institute for New Materials (DC2, DC3, DC15); Stockholm University (DC4, DC13); Basque Center for Applied Mathematics (DC5); CIC
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involved in the Network. The doctoral candidates will be hired in one of the following institutions/organizations: Max Planck Institute of Colloids and Interfaces (DC1) Leibniz Institute for New Materials
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opportunities and exchange with all labs involved in the Network. The doctoral candidates will be hired in one of the following institutions/organisations: 1. Max Planck Institute of Colloids and Interfaces
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@nist.gov 301.975.5421 Description A wide variety of phenomena in soft matter including phase equilibrium, self-assembly and aggregation are studied in biological materials, colloids, polymers, ionic liquids
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for and have been granted beamtime at neutron or synchrotron facilities. Additional requirements: You have a PhD in an area that is relevant for the project, e.g. colloid science, soft matter, biophysics
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Medal 2000 for phase equilibria. The medal honours his research into colloids in general and colloidal liquid crystals in particular. Colloids are rod-like, plate-like or spherical particles suspended in
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, blood clots, highly-efficient batteries, multiphase flow in colloidal and geological systems, and the burgeoning field of metal 3D printing. Job Description: As this far-field neutron interferometer will