Quarterly Journal of the Chemical Society of London |
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Page 4199
... iodide - ion photolysis is also due to the formation and reaction of the hydrogen molecular ion ( Weiss , Ñature , 1950 , 165 , 728 ) . Hardly any quantitative data are recorded concerning the photochemistry of iodide ions in the ...
... iodide - ion photolysis is also due to the formation and reaction of the hydrogen molecular ion ( Weiss , Ñature , 1950 , 165 , 728 ) . Hardly any quantitative data are recorded concerning the photochemistry of iodide ions in the ...
Page 4200
... iodide concentrations . Some of the initial yields for constant light intensity are given in Table 1 , and it is seen that the TABLE 1 . pH 1-78 0.95 0.30 Concn . of iodide , mol./1 . 0.004 Initial rate * ( mol./1 . min . ) × 105 PH ...
... iodide concentrations . Some of the initial yields for constant light intensity are given in Table 1 , and it is seen that the TABLE 1 . pH 1-78 0.95 0.30 Concn . of iodide , mol./1 . 0.004 Initial rate * ( mol./1 . min . ) × 105 PH ...
Page 4541
... iodide by treatment with sodium iodide in acetone solution ; the iodide , which need not be isolated , is then converted into the sulphonate , in good yield , by warming it with sodium sulphite in aqueous acetone . The simplicity and ...
... iodide by treatment with sodium iodide in acetone solution ; the iodide , which need not be isolated , is then converted into the sulphonate , in good yield , by warming it with sodium sulphite in aqueous acetone . The simplicity and ...
Contents
Heat of Hydrolysis of Phosphorus Oxychloride and Phosphorus Trichloride | 4086 |
The Vapour Pressure of Aqueous Solutions of Beryllium Sulphate and of Uranyl | 4115 |
Determination of Individual Adsorption | 4123 |
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acetic acid acetone added alcohol alkaline alkoxide aluminium chloride Amer aniline aqueous sodium atom azoxymethane benzene boiling bond bromine Calc carbon catalyst CH₂ Chem chloroform colourless compound concentration cooled crystallised crystals cyclohexyl decomp decomposition derivative dilute dimethylberyllium dioxide dissolved distilled dried ester ethanol ether evaporated experimental extracted filtered filtrate fluoride formation formed Found fraction frequencies gave give glycol heated under reflux hydrazine hydrochloric acid hydrogen chloride hydrolysis infra-red iodide iodine isolated isomerisation ketone Light absorption light petroleum b. p. liquid m. p. and mixed method methyl mixed m. p. mixture mole molecular molecule needles nitrate nitric acid nitrogen obtained oxide potassium precipitated prepared prisms pteridine reaction requires residue room temperature salt sodium hydroxide solid soluble solution solvent spectra sulphate sulphide sulphuric acid Table uroporphyrin vapour vibration washed yellow yield zirconium