. Carnegie Institution of Washington publication. 25^ 50 <£ 75# 1005; Percentage of Methyl Alcohol FIG. 84. — CONDUCTIVITY OF COPPER CHLORIDE IN MIXTURES OF METHYL ALCOHOL AND ETHYL ALCOHOL AT 0°.. 2554 50-4 75 # 100 $ Percentage of Methyl Alcohol FIG. 85. — CONDUCTIVITY OF COPPER CHLORIDE IN MIXTURES OF METHYL ALCOHOL AND ETHYL ALCOHOL AT 25°. POTASSIUM STJLPHOCYANATE. The potassium sulphocyanate used in this work was purified in the follow- ing manner: The purest salt obtainable was twice recrystallized from redis- tilled, 95 per cent ethyl alcohol, and then once recrystallized from absol


. Carnegie Institution of Washington publication. 25^ 50 <£ 75# 1005; Percentage of Methyl Alcohol FIG. 84. — CONDUCTIVITY OF COPPER CHLORIDE IN MIXTURES OF METHYL ALCOHOL AND ETHYL ALCOHOL AT 0°.. 2554 50-4 75 # 100 $ Percentage of Methyl Alcohol FIG. 85. — CONDUCTIVITY OF COPPER CHLORIDE IN MIXTURES OF METHYL ALCOHOL AND ETHYL ALCOHOL AT 25°. POTASSIUM STJLPHOCYANATE. The potassium sulphocyanate used in this work was purified in the follow- ing manner: The purest salt obtainable was twice recrystallized from redis- tilled, 95 per cent ethyl alcohol, and then once recrystallized from absolute alcohol. The crystals were drained by suction, and dried at 100°. In every case the salt was crystallized in as finely divided condition as possible. The salt was preserved in glass-stoppered bottles, in a sulphuric acid Please note that these images are extracted from scanned page images that may have been digitally enhanced for readability - coloration and appearance of these illustrations may not perfectly resemble the original Carnegie Institution of Washington. Washington, Carnegie Institution of Washington


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