A 72.0 g sample of an organic solid is dissolved in 180mL of water. The solid is extracted using one 60 mL extraction in the first extraction of an organic solvent which has a partition (distribution) coefficient with water of 10. The first extraction removed 55.4 g of solid from water. What are the numbers that need to go in box A and B to calculate the volume of solvent (y) that would be necessary to remove an additional 7.0g from the remaining sample dissolved in water. You DON'T have to complete the calculation to solve for y.

Macroscale and Microscale Organic Experiments
7th Edition
ISBN:9781305577190
Author:Kenneth L. Williamson, Katherine M. Masters
Publisher:Kenneth L. Williamson, Katherine M. Masters
Chapter7: Extraction
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A 72.0 g sample of an organic solid is dissolved in 180mL of water.
The solid is extracted using one 60 mL extraction in the first
extraction of an organic solvent which has a partition (distribution)
coefficlent with water of 10. The first extraction removed 55.4 g of
solid from water. What are the numbers that need to go in
box A and B to calculate the volume of solvent (y) that would be
necessary to remove an additional 7.0g from the remaining sample
dissolved in water. You DON'T have to complete the calculation to
solve for y.
Transcribed Image Text:A 72.0 g sample of an organic solid is dissolved in 180mL of water. The solid is extracted using one 60 mL extraction in the first extraction of an organic solvent which has a partition (distribution) coefficlent with water of 10. The first extraction removed 55.4 g of solid from water. What are the numbers that need to go in box A and B to calculate the volume of solvent (y) that would be necessary to remove an additional 7.0g from the remaining sample dissolved in water. You DON'T have to complete the calculation to solve for y.
y
B.
Transcribed Image Text:y B.
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