5. Again, regarding the experiment completed in lab, draw a separatory funnel and identify all solvents and anything dissolved in them after salicylic acid is extracted from the ethyl acetate and the aqueous layer was removed from the separatory funnel. 3 H₂O Nao CIO 6. Rather than extracting salicylic acid into an aqueous layer, what might be another way to isolate salicylic acid without completing an acid/base reaction?

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Could I get some help with question 6? Thank you!
Investigate
5. Again, regarding the experiment completed in lab, draw a separatory funnel and identify all solvents
and anything dissolved in them after salicylic acid is extracted from the ethyl acetate and the aqueous
layer was removed from the separatory funnel.
H₂O
Na CIO
6. Rather than extracting salicylic acid into an aqueous layer, what might be another way to isolate
salicylic acid without completing an acid/base reaction?
20
lij
Transcribed Image Text:Investigate 5. Again, regarding the experiment completed in lab, draw a separatory funnel and identify all solvents and anything dissolved in them after salicylic acid is extracted from the ethyl acetate and the aqueous layer was removed from the separatory funnel. H₂O Na CIO 6. Rather than extracting salicylic acid into an aqueous layer, what might be another way to isolate salicylic acid without completing an acid/base reaction? 20 lij
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Introduction

Salicylic acid is a white crystalline organic acid with the chemical formula C7H6O3. It is a naturally occurring compound that can be found in plants such as willow trees, and it is also synthesized for use in a variety of industrial and medicinal applications. Salicylic acid has a wide range of uses, including as a precursor to the synthesis of aspirin, as a topical treatment for acne and other skin conditions, and as a food preservative. It is also used in the production of fragrances, dyes, and other chemicals.

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