m (b) What is the relative error in the molality as determined with this more precise thermometer? % Problems 1. Cyclohexanol, C6H₁₁OH, is sometimes used as the solvent in molecular weight determinations by freezing- point depression. If 0.253 g of benzoic acid, C6H5COOH, dissolved in 12.45 g of cyclohexanol, lowered the freezing-point of pure cyclohexanol by 6.55 °C, what is the molal freezing-point constant of this solvent? 302 8 11125 03400" 5 MADE IN TAIWAN

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Chapter8: Solutions
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(b) What is the relative error in the molality as determined with this more precise thermometer?
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1. Cyclohexanol, C6H₁₁OH, is sometimes used as the solvent in molecular weight determinations by freezing-
point depression. If 0.253 g of benzoic acid, C6H5COOH, dissolved in 12.45 g of cyclohexanol, lowered the
freezing-point of pure cyclohexanol by 6.55 °C, what is the molal freezing-point constant of this solvent?
302
8
11125 03400"
5
MADE IN TAIWAN
Transcribed Image Text:m (b) What is the relative error in the molality as determined with this more precise thermometer? % Problems 1. Cyclohexanol, C6H₁₁OH, is sometimes used as the solvent in molecular weight determinations by freezing- point depression. If 0.253 g of benzoic acid, C6H5COOH, dissolved in 12.45 g of cyclohexanol, lowered the freezing-point of pure cyclohexanol by 6.55 °C, what is the molal freezing-point constant of this solvent? 302 8 11125 03400" 5 MADE IN TAIWAN
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