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Change of Particle Size of Spherical Alumina Powders Prepared by Emulsion Method in the Region of Low Hydroxypropylcellulose Concentration
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J. Korean Ceram. Soc.. 1995;32(5):594

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Effects on the size of nano-TiO2 powders prepared with sol–emulsion–gel method
Powder Technology. 2006;168(1):32-36   Crossref logo
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Al-doped Ni-rich cathode powders prepared from the precursor powders with fine size and spherical shape
Electrochimica Acta. 2007;52(25):7286-7292   Crossref logo
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A method of determining particle size of powders
Vacuum. 1956;6:292   Crossref logo
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A study of particle size distribution in zirconia — Alumina powders
Scripta Materialia. 1996;34(1):151-156   Crossref logo
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Methyl methacrylate emulsion polymerization at low monomer concentration: Kinetic modeling of nucleation, particle size distribution, and rate of polymerization
Journal of Polymer Science Part A: Polymer Chemistry. 2001;39(14):2547-2556   Crossref logo
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Nonlinear optical and XPS properties of Au and Ag nanometer-size particle-doped alumina films prepared by the sol–gel method
Optics Communications. 2001;190(1-6):385-389   Crossref logo
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Ultrafine alumina powders via a sol-emulsion-gel method
Journal of Non-Crystalline Solids. 1992;147-148:598-605   Crossref logo
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Role of organic solvents and surface-active agents in the sol-emulsion-gel synthesis of spherical alumina powders
Journal of Materials Research. 2000;15(1):176-185   Crossref logo

Techniques to analyse particle size of food powders
Handbook of Food Powders. 2013;309-338   Crossref logo
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Third-order nonlinear optical properties of Disperse Red 1 and Au nanometer-size particle-doped alumina films prepared by the sol–gel method
Thin Solid Films. 1998;322(1-2):233-237   Crossref logo
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