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Titlebook: Solubility of Gases and Liquids; A Graphic Approach D W. Gerrard Book 1976 Springer Science+Business Media New York 1976 bonding.chemistry.

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Sources and Form of Data,dicating the pressures and temperatures reported, and the 346 references cited. Fifty-five “gases” are named, as follows: helium, neon, argon, krypton, xenon, hydrogen, nitrogen, oxygen, ozone, chlorine, air, methane, ethane, propane, butane, ethylene, propylene, cyclopropane, isobutylene, acetylene
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Ammonia and the Three Methylamines,ed “0.88 ammonia” is about 18.0 ., 31.3 ., and contains about 0.564 mole per mole (H.O) of water at 12°C. At 0°C, . is 0.953 for ., and this corresponds to 52.9 . and should, in accordance with the conventional statement, be looked upon as almost “pure NH.OH.”
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Halogenoalkanes,ata (Table 28) on bromomethane (bp 3.59°C) and chloroethane (bp 13.1°C) now enable diagrams to be drawn, as shown in Figs. 117–122. Although there are some differences in the .., .., and .. values for corresponding liquids which must be attributed to factors other than the tendency of the gas to con
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Prediction, to the prediction of .. over the whole range of gases A and liquids S. Certain trends, such as “like dissolving like,” have been recognized; but, as Hildebrand pointed out, much depends on how one defines “likeness.” The “like dissolving like” slogan can be grossly misleading. One only needs to lay
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e appeared to be so varied that even experts have from time to time remarked on the difficulty of seeing a consistent pattern. Now for the first time the essential pattern of all known gas solubility data is set out in a graphic form for all to see. The continuous merging of the gas-liquid systems a
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