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Comparison solutions

Nitric-hydrofluoric acid test 1 10% HNO3 -1- 3% HF 4 h exptosure to 70° C solution Comparison of ratio of mass loss of laboratory annealed and as-received samples of same material Corrosion potential of 304 steel = -l-O-14 to -I-0-54 1. Chromium-depleted areas 2. Not for 0-phase 3. Used only for Mo-bearing steels... [Pg.1032]

The Number of Dipoles per Unit Volume. The Entropy Change Accompanying Proton Transfers. The Equilibrium between a Solid and Its Saturated Solution. Examples of Values of L and AF°. The Change of Solubility with Temperature. Uni-divalent and Other Solutes. Lithium Carbonate in Aqueous Solution. H2COj in Aqueous Solution. Comparison between HjCOj and Li2C03 in Aqueous Solution. Heats of Solution and the Conventional Free Energies and Entropies of Solution. [Pg.197]

DillingWL. 1977. Interphase transfer processes. 11. Evaporation rates of chloromethanes, ethanes, ethylenes, propanes, and propylenes from dilute aqueous solutions. Comparisons with theoretical predictions. Environmental Science and Technology 11 405-409. [Pg.261]

Petrier C, Lamy MF, Francony A, Benahceene A, David B, Renaudin V, Gondreson N (1994) Sonochemical degradation of phenol in dilute aqueous solutions comparison of the reaction rates at 20 and 487 kHz. J Phys Chem 98 10514—10520... [Pg.166]

Figure 6.3 Ag-Au solid solution. Comparison of measured hardnesses and values calculated from heats of mixing. Data from Sachs and Weerts (1930). Figure 6.3 Ag-Au solid solution. Comparison of measured hardnesses and values calculated from heats of mixing. Data from Sachs and Weerts (1930).
Engberts, Molecular dynamics computer simulation of the hydration of two simple organic solutes. Comparison with the simulation of an empty cavity, Mol. Phys. 53 1517 (1984). [Pg.116]

Bischoff, W. D., F. T. Mackenzie, and F. C. Bishop (1987), "Stabilities of Synthetic Magnesian Calcites in Aqueous Solution Comparison with Biogenic Materials," Geochim. Cosmochim. Acfa51, 1413-1423. [Pg.398]

F. Perrin Theory of fluorescence polarization (sphere). Perriris equation Indirect determination of lifetimes in solution. Comparison with radiative lifetimes... [Pg.9]

The present position is that some quantum yields are known with an accuracy of 10-20%, but that further work is required before the reliability of published data can be properly assessed. A relatively new development, however, is capable of exploitation. This rests on the determination of the true shapes on a quantum intensity-wave number plot of the fluorescence bands of certain solutions selected as standards by means of carefully calibrated monochromator-photomultiplier combinations, and on agreement on their yields (14,37,44,45,49). It is then possible to use these solutions to calibrate other monochromator-photomultiplier instruments and so to measure true band shapes for other solutions. Comparison of band areas for any solution and for a standard under conditions of equal amounts of monochromatic exciting light absorbed will then give a value of the quantum yield. [Pg.31]

Fig. 13. Copolymerization DADMAC/acrylamide in aqueous solution. Comparison of experimental results with kinetic models (Data taken from [38])... Fig. 13. Copolymerization DADMAC/acrylamide in aqueous solution. Comparison of experimental results with kinetic models (Data taken from [38])...
Nishimoto S, Hatta H, Ueshima H, Kagiya T (1992) 1-(5 -Fluoro-6 -hydroxy-5, 6 -dihydrouracil-5 -yl)-5-fluorouracil,a novel N(1)-C(5) linked dimer that releases 5-fluorouracil by radiation activation under hypoxic conditions. J Med Chem 35 2711-2712 Norman ROC, Storey PM, West PR (1970) Electron spin resonance studies, part XXV. Reactions of the sulphate radical anion with organic compounds. J Chem Soc (B) 1087-1095 Novais HM, Steenken S (1986) ESR studies of electron and hydrogen adducts of thymine and uracil and their derivatives and of 4,6-dihydroxypyrimidines in aqueous solution. Comparison with data from solid state. The protonation at carbon of the electron adducts. J Am Chem Soc 108 1-6... [Pg.326]

Yamamoto O (1973) Radiation-induced binding of nucleic acid constituents with protein constituents and with each other. Int J Radiat Phys Chem 5 213-229 Yamamoto O, Mandal PC (1988) Radiation-induced fluorescence changes of 2 -deoxycytidine and cytidilyl-cytidine in aqueous solution. Comparison with radiolytic behaviors of other nudeo-base derivatives. J Radiat Res 131-143... [Pg.333]

Bischoff W.D., Mackenzie F.T. and Bishop F.C. (1987) Stabilities of synthetic magnesian calcites in aqueous solution Comparison with biogenicmaterials. Geochim. Cosmochim. Acta 51, 1413-1423. [Pg.616]

Beitz C, Bertsch T, Hannak D, Schrammel W, Einberger C, Wehling M. 1999. Compatibility of plastics with cytotoxic drug solutions-comparison of polyethylene with other container materials. Int. J. Pharm. 185(1) 113-121. [Pg.261]

Mercaptopyrazine (151a) is best prepared by the action of sodium hydrogen sulfide on chloropyrazine in dimethylformamide.147 It decomposes on heating with evolution of hydrogen sulfide and formation of di-2-pyrazinyl sulfide. The latter compound is also obtained together with mercaptopyrazine on treatment of chloropyrazine with aqueous potassium hydrogen sulfide solution. Comparison of the... [Pg.179]

The SDE and transport equation can be used with the same univocity conditions. For simple univocity conditions and functions such as Di-a(Fa), the transport equations have analytical solutions. Comparison with the numerical solutions of stochastic models allows one to verify whether the stochastic model works properly. The numerical solution of SDE is carried out by space and time discretization into space subdivisions called bins. In the bins j of the space division i, the dimensionless concentration of the property (F = Fa/Faq) takes the Fj value. Taking into consideration these previous statements allows one to write the numerical version of relation (4.118) ... [Pg.233]


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See also in sourсe #XX -- [ Pg.250 ]




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Comparison With Exact and Linearized Solutions

Comparison of Euler and backward Eulers methods with exact solution

Comparison of Eulers method with exact solution

Comparison of Melt and Solution Spinning

Comparison of Protein Dynamics Between Solution and Solid

Comparison with Solution Properties

Comparison with exact solutions

Landfill-capping solution comparison

Normal solution comparison with experiment

Polar organic solute, comparison

Solute organic solutes, comparison

Solution polymers, comparison

Substituent solution, comparison

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