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Titlebook: Colloid Process Engineering; Matthias Kind,Wolfgang Peukert,Heike P. Schuchmann Book 2015 Springer International Publishing Switzerland 20

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Sichere Identitäten in einer digitalen Weltions that can be stored and processed, and to clarify stabilization mechanisms in detail, the stabilization of metal oxide nanoparticles with small molecules was investigated. Particularly, the adsorption of the stabilizer and thereby the dynamic and kinetic processes on the surface of the metal oxi
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Neue Anforderungen an den Datenschutzeal gel, highly porous particle aggregates are produced by sintering of glass beads inside a graphite mold. A lab-scale X-ray microtomograph is used to perform a series of drying experiments with loose packings of sintered glass beads (mean diameter 700 μm) initially saturated with water. The recons
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Der Freiheitssicherheitskomplexter industry, is important for colloidal crystal synthesis, and has attracted attention progressively in the pharmaceutical industry for drug delivery vehicles. For such colloidal processing, the investigation of the restructuring behavior of colloidal aggregates by means of numerical methods has be
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Die Freiheit und ihre Institutionend strongly influences the solid formation as well as the particle properties (particle size distribution, structure or firmness). Process parameters like temperature, pH and ionic strength of solution as well as chemical composition and energy dissipation are crucial for the production of silica pow
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Zur Dialektik von Freiheit und Sicherheit the order of several micrometers. The properties of these aggregates for application or further processing are specified by particle characteristics such as morphology, size, size distribution, bonding mechanism and structure of primary and secondary particles. In this study, the effect of the proc
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Zur Dialektik von Freiheit und Sicherheitss transition due to weak attractive interactions among particles. This opens a versatile, new route to manufacture highly concentrated, freely flowing dispersions with narrow particle size distribution. Our investigations are based on two model systems: polystyrene (PS)-microgel particles suspended
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https://doi.org/10.1007/978-3-531-19163-8d quantum confined manganese doped ZnS, ZnO, PbS and PbSe semiconductor nanoparticles, so-called quantum dots (QDs) and silver noble metal nanorods. All materials were chosen due to their technical relevance for future applications in the emerging fields of solar cells, sensors and diagnostics as we
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