Aspirin (MM = 180.2) is prepared from the reaction of salicylic acid (MM = 138.1) and acetic anhydride (MM = 102.1). Assuming 100% yield, how many grams of aspirin can be synthesized if 20.0 g of salicylic acid and 20.0 g of acetic anhydride were initially used? COOH Dalsla + CH3-C-0-C- OH (C7H6O3) Salicyclic acid (s) COOH (C₂H60₂) Acetic anhydride () (CgH8O4) Aspirin (s) -CH3 OCCH3 0 + CH3COOH (C₂H₂O₂) Acetic acid ()

Chemistry: The Molecular Science
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Chapter10: Fuels, Organic Chemicals, And Polymers
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4.
Micrograms of O2 is needed to completely oxidize a quadrillion (i.e. 1015) molecules of D-fructose? Express
your answer in 1 significant figure. Recall 1 g = 106 µg
Answer:
grams of oxygen gas is needed to convert 3.0 g of D-fructose into carbon dioxide and water.
Aspirin (MM = 180.2) is prepared from the reaction of salicylic acid (MM = 138.1) and acetic anhydride (MM = 102.1).
Assuming 100% yield, how many grams of aspirin can be synthesized if 20.0 g of salicylic acid and 20.0 g of acetic anhydride
were initially used?
COOH
OH
(C7H8O3)
Salicyclic acid (s)
0
+ CH3-C-0-C-CH3
COOH
(CgH8O4)
Aspirin (s)
O
(C₂H6O3)
Acetic anhydride ()
OCCH3
O
CH3COOH
(C₂H₂O₂)
Acetic acid (6)
old for the synthesis of aspirin is often lower than the theoretical yield partly because of product losses during
Transcribed Image Text:4. Micrograms of O2 is needed to completely oxidize a quadrillion (i.e. 1015) molecules of D-fructose? Express your answer in 1 significant figure. Recall 1 g = 106 µg Answer: grams of oxygen gas is needed to convert 3.0 g of D-fructose into carbon dioxide and water. Aspirin (MM = 180.2) is prepared from the reaction of salicylic acid (MM = 138.1) and acetic anhydride (MM = 102.1). Assuming 100% yield, how many grams of aspirin can be synthesized if 20.0 g of salicylic acid and 20.0 g of acetic anhydride were initially used? COOH OH (C7H8O3) Salicyclic acid (s) 0 + CH3-C-0-C-CH3 COOH (CgH8O4) Aspirin (s) O (C₂H6O3) Acetic anhydride () OCCH3 O CH3COOH (C₂H₂O₂) Acetic acid (6) old for the synthesis of aspirin is often lower than the theoretical yield partly because of product losses during
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