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Peng dispersion

Peng Y. and Lohmann U. (2003). Sensitivity study of the spectral dispersion of the cloud droplet size distribution on the indirect aerosol effect. Geophys. Res. Lett., 30(10), 14/1-14/4. [Pg.547]

FIGURE 10 The solubility of C. I. Disperse Orange 30 dye in supercritical carbon dioxide as a function of pressure. Lines are calculated with Peng-Robinson equation of state (Equation 12). (From Baek, J.-K., Kim, S., Lee, G.-S., and Shim, J.-J., Korean J. Chem. Eng., 21(1), 230-235, 2004.)... [Pg.13]

J. Peng, N. Takada, and N. Minami. Red electroluminescence of a europium complex dispersed in poly(A-vinylcarbazole). Thin Solid Films, 405(1-2) 224-227, February 2002. [Pg.324]

Oil and water do not mix this is an everyday observation. Main reason is oil is insoluble in water, and vice versa. At the oil-water interface, one will thus have interfacial surface forces. In this chapter, the methods in which one can indeed disperse oil in water (or vice versa) will be described. The analyses of the IFT, which exists at any oil-water interface, will be described. In the literature, the IFT, 7ab> between two liquids with and Yb has been described in much detail (Adamson and Cast, 1997 Chattoraj and Birdi, 1984 Miqueu et al., 2011 Peng et al., 2011 Somasundaran, 2006). An empirical relation was suggested (Antonow s rule) by which one can predict the surface tension Yab-... [Pg.39]

Song, S., Peng, C. (2008). Viscosities of binary and ternary mixtures of water, alcohol, acetone, and hexane. Journal of Dispersion Science and Technology, 29(10), 1367-1372. [Pg.110]

Sas84 ] Sastry, S.M.L., Peng, T.C., and Beck-ERMAN, L.P., Stmeture and Properties of Rapidly Solidified Dispersion-Strengthened Titanium AUoys Part II, Tensile and Creep Properties, Metall. Trans., Vol 15A, 1984, p. 1465-1474... [Pg.78]

Zhu J, Kim J D, Peng H, Margrave J L, Khabashesku V N and Barrera E V (2003) Improving the dispersion and integration of single-walled carbon nanotubes in epoxy composites through functionalization. Nano Lett 3 1107-1113. [Pg.360]

Yeh J., Chang K., Peng C., Lai M., Hung C., Hsu S., Hwang S., Lin H., and Lin H., Effect of dispersion capability of organoclay on cellular structure and physical properties of PMMA/clay nanocomposite foams. Materials Chemistry and Physics 2009, 115, 744-750. [Pg.32]

Figure 20.12 Dispersion of CNTs in nanocomposites fabricated using different dispersion techniques (a sonication in water bath b shear mixing c probe sonicator d calendering scale bar = 20 pm). Peng-Cheng et al. [271]. Reproduced with permission of Elsevier. Figure 20.12 Dispersion of CNTs in nanocomposites fabricated using different dispersion techniques (a sonication in water bath b shear mixing c probe sonicator d calendering scale bar = 20 pm). Peng-Cheng et al. [271]. Reproduced with permission of Elsevier.
Peng-Cheng M, Naveed A, Siddiqui GM, Jang-Kyo K. Dispersion and functionahzation of carbon nanotubes for polymer-based nanocomposites A review. Composites A 2010 41 1345-1367. [Pg.395]

Huang, W., Deng, S., Li, W., Peng, Z., Liu, Y., Hu, L., Xuan, L. A polarization-independent and low seattering transmission grating for a distributed feedback cavity based on holographie polymer dispersed liquid crystal. J. Opt. 13, 085501 (2011)... [Pg.401]


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