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Solutions, vii

Kullberg, L., Thermodynamics of metal complex formation in aqueous solution. VII. Equilibrium and enthalpy measurements on the nickel(II)-selenocyanate system, Acta Chem. Scand, A 28, (1974), 897-902. Cited on pages 297, 315, 316. [Pg.726]

Nierling W, Nordmeier E. Studies on polyelectrolyte solutions. VII. Fast, heterogeneous, and slow diffusion modes of polytdiallyl-ALV-dimethylammoniiim chloride) in aqueous alcoholic salt solvents. Polym J 1997 29 795-806. [Pg.133]

Examples of intergranular cracking [7.49] comprise i) carbon steel in caustic, nitrate, acetate and carbonate icarbonate solutions, ii) low-alloy steels in pure water, iii) stainless steels that are liable to ordinary intergranular corrosion in oxygen-containing water, iv) a-brass in ammonia solutions that cause surface films, v) aluminium alloys in water vapour and humid hydrogen gas, vi) P-titanium alloys in metanol solutions, vii) tempered martensitic stainless steels in chloride solutions and viii) nickel alloys in very pure water and alkaline solutions. [Pg.164]

GOR Gordon, M., Chermin, H.A.G., and Koningsveld, R., Liquid-liquid phase seapration in multicomponent polymer solutions. VII. Relations for the spinodal and critical loci. Macromolecules, 2, 207, 1969. [Pg.696]

The fuel cycle using thorium based on A. Radkowsky s RTR (Radkowsky Thorium Reactor) concept [VII-4], which has been studied in the RRC Kurchatov Institute for some years, is considered the prospective development of the VBER-300 to increase cost efficiency, enhance safety and protection of the environment. As a result of investigations performed by the RRC Kurchatov Institute , the concept of the VVER-T reactor has been developed, making maximum use of the existing WER-1000 technology, equipment and engineering solutions [VII-5], This concept is also supposed to be usable in the VBER-300. [Pg.249]

FIGURE 11.2 Scheme of the installation for the gas-phase oxidation of hydrocarbons used by the Celanese firm [263] (1) mixer, (2) heater, (3) reactor, (4) formaldehyde scrubber, (5) water scrubber, (6) distillation coiumn, (7) heat exchanger. (I) Hydrocarbon gas (11) air (111) cycle gas (IV) gas for the hydrocarbon recovery unit (V) gas for light products purification unit (VI) recycled formalin solution (VII) crude formalin for purification (VIII) formaldehyde from chemical products purification unit (IX) caustic soda to adjust the pH value. [Pg.204]

Fox, J.P., Jencks, W.P. General acid and general base catalysis of the methoxyami-nolysis of 1-acetyl-l,2,4-triazole. J. Am. Chem. Soc. 1974, 96(5), 1436-1449. Bruice, T.C., Donzel, A., Huffman, R.W., Butler, A.R. Aminolysis of phenyl acetates in aqueous solutions. VII. Observations on the influence of salts, amine structure, and base strength. J. Am. Chem. Soc. 1967, 89(9), 2106-2121. Williams, A., Jencks, W.P. Acid and base catalysis of urea synthesis nonlinear Bronsted plots consistent with a diffusion-controlled proton-transfer mechanism and the reactions of imidazole and N-methylimidazole with cyanic acid. J. Chem. Soc. Perkin Trans. 2. 1974, 1760-1768. [Pg.199]

Lutz, B. and Wendt, H. (1970) Fast ionic reaction in solution. VII. Kinetics of the fission and formation of the dimeric isopolybases (FeOFOj and (VOOH)2. Ber. Bunsen Ges. Phys. Chem., 74,... [Pg.708]


See other pages where Solutions, vii is mentioned: [Pg.331]    [Pg.56]    [Pg.131]    [Pg.2332]    [Pg.87]    [Pg.1561]    [Pg.1639]    [Pg.2113]    [Pg.2147]   
See also in sourсe #XX -- [ Pg.15 , Pg.22 , Pg.67 ]




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Solution to Design Problem VII

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