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. Drug delivery systems Perform various methods for polymer self-assembly (dialysis method, thin film method, nanoprecipitation) Characterize the size, charge, and colloidal stability of polymer
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media. Analyze the data obtained in the experiments. Write scientific articles and manuscripts. Manage and maintain laboratory equipment and instruments. Where to apply Website https
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applied physics. We work across a broad range of topics, including the mechanics of particle systems (colloidal and granular), architected and topologically interlocked materials, the mechanics of fragility
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of action of enzyme mimics (in collaboration with ISM). Material Development: • Characterize the physicochemical properties of modified substrates: o Colloidal stability and self-association properties. o
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materials science, mechanics, and applied physics. We work across a broad range of topics, including the mechanics of particle systems (colloidal and granular), architected and topologically interlocked
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Biotechnology. https://chem.tf.chiba-u.jp/ [Work content and job description] Research activities in the specialized fields listed below, as well as educational duties in the Graduate School of Engineering
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7 Sep 2026 Job Information Organisation/Company Institute of Physical Chemistry, Polish Academy of Sciences Department Team 02, Living materials, https://www.livingmaterials.org/ Research Field
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contribute to the following activities: - Design and optimization of functional formulations containing luminescent nanoparticles - Study of colloidal stability, rheological behavior, and dispersion quality
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emphasis on colloidal systems, molecular recognition, and functional nanostructured materials for life science applications. The successful candidate will contribute to research activities associated with
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. Microscopic living systems are chemically reactive systems that are significantly out of equilibrium, in which Brownian motion is the dominant mode of transport. At the colloidal scale, chemical energies