Chemical(s) Weight (g) Melting Point (C) Starting p-aminophenol not applicable Isolated Crude product 1942.129 .1949 ~ 0

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Chemical(s) Weight (g) Melting Point (C) Starting p-aminophenol not applicable Isolated Crude product 1942.129 .1949 ~ 0

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Chemical S Weight G Melting Point C Starting P Aminophenol Not Applicable Isolated Crude Product 1942 129 1949 0 1
Chemical S Weight G Melting Point C Starting P Aminophenol Not Applicable Isolated Crude Product 1942 129 1949 0 1 (17.43 KiB) Viewed 13 times
Chemical S Weight G Melting Point C Starting P Aminophenol Not Applicable Isolated Crude Product 1942 129 1949 0 2
Chemical S Weight G Melting Point C Starting P Aminophenol Not Applicable Isolated Crude Product 1942 129 1949 0 2 (29.25 KiB) Viewed 13 times
Chemical(s) Weight (g) Melting Point (C) Starting p-aminophenol not applicable Isolated Crude product 1942.129 .1949 ~ 0029 Isolated Recrystallized product 175 - 177°C D 165.00 - 1668c N

7. (2 pts.) Give the number of moles of pure acetaminophen that you isolated, show all equations with units! (assume that mass and weight are the same) 9. (2 pts.) Calculate the percent yield of the pure acetaminophen (i.e. after recrystallization). Use your theoretical yield and show all equations and include all units. 10. (2 pts.) Why can't you calculate the yield of a reaction by taking the ratio of the mass of the product to the mass of the limiting reagent/reactant, i.e. why do you have to convert the masses into moles? ugyool Invic
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