A9.72 gram sample of a compound with a molar mass of 96.0 g mol-1, when dissolved in 115 g of water, gave a solution which had a freezing point of -1.74 °C. Calculate the experimental value of the van't Hoff factor. Kf for water = 1.86 °C m-1 (the answer should be entered with 3 significant figures; do not enter units; give answer in normal notation--examples include 1.23 and 12.3 and -123 and 123.)
A9.72 gram sample of a compound with a molar mass of 96.0 g mol-1, when dissolved in 115 g of water, gave a solution which had a freezing point of -1.74 °C. Calculate the experimental value of the van't Hoff factor. Kf for water = 1.86 °C m-1 (the answer should be entered with 3 significant figures; do not enter units; give answer in normal notation--examples include 1.23 and 12.3 and -123 and 123.)
Chemistry
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ISBN:9781305957404
Author:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
Publisher:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
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![A9.72 gram sample of a compound with a molar mass of 96.0 g mol, when dissolved in 115 g of water, gave a solution which had a freezing point of
-1.74 °C. Calculate the experimental value of the van't Hoff factor. Ke for water = 1.86 °C m-1
(the answer should be entered with 3 significant figures; do not enter units; give answer in normal notation-examples include 1.23 and 12.3 and
123 and 123.)
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Transcribed Image Text:A9.72 gram sample of a compound with a molar mass of 96.0 g mol, when dissolved in 115 g of water, gave a solution which had a freezing point of
-1.74 °C. Calculate the experimental value of the van't Hoff factor. Ke for water = 1.86 °C m-1
(the answer should be entered with 3 significant figures; do not enter units; give answer in normal notation-examples include 1.23 and 12.3 and
123 and 123.)
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