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Property Comparison

Table 9. Physical Property Comparisons of CFCs and Their HCFC or HFC Substitutes... Table 9. Physical Property Comparisons of CFCs and Their HCFC or HFC Substitutes...
Properties. Fiber property comparisons for the different products are given in Table 1. [Pg.68]

Polyphenylene oxide)s. Properties Comparison Chart, General Electric Co., Pittsfield, Mass., 1969. [Pg.335]

Property Comparison with other substances Importance to environment... [Pg.208]

Table 8-34 Property comparison and design guidelines for RTM vs. other RP processes... Table 8-34 Property comparison and design guidelines for RTM vs. other RP processes...
Table 13. Physico-chemical properties comparison of the large-scale and small-scale Au/X40S and Au/XC72R catalysts. Table 13. Physico-chemical properties comparison of the large-scale and small-scale Au/X40S and Au/XC72R catalysts.
Table 7.3 Physical property comparison of amorphous PETG, PCTG and PCTA... Table 7.3 Physical property comparison of amorphous PETG, PCTG and PCTA...
Property Comparison with Other Substances Importance in Physical-Biological Environment... [Pg.31]

Phtalocyanine dyads (28a,b) and sub-phtalocyanine dyads (30a-c) (Fig. 14) are porphyrin analogs with unique electrochemical properties. Comparison of the redox potentials of (28a) and (28b) with those of model compounds (25) and (29a) and (29b) (see Table 15) indicate that the dyads retain the electronic properties of the individual units. However, all the phtalocyanine-centered processes in both dyads are positively shifted with respect to those of the model phtalocya-nines, (29a,b). Additionally, the observed C6o-centered reduction potentials of both dyads are shifted to more negative values... [Pg.173]

Table 6.1. Typical Physical Property Comparison of 3M Performance Fluids... Table 6.1. Typical Physical Property Comparison of 3M Performance Fluids...
It was then possible, by unambiguous chemical interconversion procedures or by physical property comparisons, to relate many compounds having one or more chiral carbons to either of the enantiomers of glyceraldehyde. This enabled a number of chiral compounds to be designated as belonging to the d- or l-... [Pg.6]

Gu, L. and R. G. Strickley. 1987. Preformulation salt selection. Physical property comparisons of the tris(hydroxymethyl)aminomethane (THAM) salts of four analgesic/antiin ammatory agents with the sodium salts and the free acid iarm. Res4 255-257. [Pg.433]

Bischoff W.D., Bishop F.C. and Mackenzie F.T. (1983) Biogenically produced magnesian calcite Inhomogeneities in chemical and physical properties comparison with synthetic phases. Amer. Mineral. 68, 1183-1188. [Pg.616]

Table II. Mechanical Property Comparisons 20% Toly sulfonate Lexan Polysulfone... Table II. Mechanical Property Comparisons 20% Toly sulfonate Lexan Polysulfone...
While the individual property comparisons amply differentiate the natural products from combinatorial and drug libraries, the cumulative diversity can only be visualised by principal component analysis (PCA). [Pg.39]

A convenient way to quantify the Increase In magnitude of the u transition with the Increase In epoxy moisture content Is to compare the area under this transition peak with sample moisture content. Several possible dynamic mechanical property comparisons exist. No Identifiable trends were observed between the magnitude or area of the loss modulus (E") or tan d and the amount of moisture In the N-5208 or DGEBA-TETA epoxy samples. [Pg.99]

Figure 11.24 EL spectra of devices with the same configuration ITO/TPD (20 nm)/Tb-complex (50 nm)/AlQ (30 nm)/Mgo.9Ago.i (200 nm)/Ag (80 nm) using complexes 36 (A2), 37 (B2), and 38 (C2) as emitters with applied voltage 10 V [61]. (Reprinted with permission from H. Xin et al., Carrier-transport, photolnminescence, and electroluminescence properties comparison of a series of terbium complexes with different structures, Chemistry of Materials, 15, 3728-3733, 2003. 2003 American Chemical Society.)... Figure 11.24 EL spectra of devices with the same configuration ITO/TPD (20 nm)/Tb-complex (50 nm)/AlQ (30 nm)/Mgo.9Ago.i (200 nm)/Ag (80 nm) using complexes 36 (A2), 37 (B2), and 38 (C2) as emitters with applied voltage 10 V [61]. (Reprinted with permission from H. Xin et al., Carrier-transport, photolnminescence, and electroluminescence properties comparison of a series of terbium complexes with different structures, Chemistry of Materials, 15, 3728-3733, 2003. 2003 American Chemical Society.)...
Xin, H., Shi, M., Zhang, X.M., et al. (2003) Carrier-transport, photoluminescence, and electroluminescence properties comparison of a series of terbium complexes with different structures. Chemistry Materials, 15, 3728-3733. [Pg.470]


See other pages where Property Comparison is mentioned: [Pg.133]    [Pg.161]    [Pg.290]    [Pg.495]    [Pg.194]    [Pg.9]    [Pg.154]    [Pg.46]    [Pg.47]    [Pg.202]    [Pg.352]    [Pg.465]    [Pg.133]    [Pg.554]    [Pg.62]    [Pg.257]    [Pg.400]    [Pg.6]    [Pg.77]    [Pg.239]   
See also in sourсe #XX -- [ Pg.331 ]




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Binder properties, comparison

Biodiesel property comparisons

Carbon Fiber Property Comparison

Comparison between predicted and observed elastic properties

Comparison of Properties

Comparison of Properties in the Alkane and Alkene Series

Comparison of fibre properties

Comparison of properties achieved in rubber-clay nanocomposites

Comparison of tensile properties

Comparison with Solution Properties

Comparisons basic properties

Comparisons of Property Formulations

Comparisons of primary material properties

Compression properties, comparison

Lead azide property comparison

Mineral mechanical properties, comparison

Oxidation states comparison of properties

Properties abrasive wear comparisons

Properties adhesive comparison

Property Comparison of Base- Versus Acid-Catalyzed RF Aerogels

Property field comparisons

Resist property comparison procedure

Silicon properties, Comparison

Vulcanizate properties, comparison

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