Aspırın (C9H804) (180.2 g/mol) is produced by the reaction of salicylic acid (C7H603) (138.1 g/mol) and acetic anhydride (C4H603) (102.1 g/mol). C7H603(s)+ C4H603(1) → C9H8O4(s) + C2H4O2(1) Suppose 2.00 g salicylic acid (C7H6O3) and 1.60 g acetic anhydride (C4H603) are mixed and allowed to react. What is the theoretical yield (in grams) of Aspirin (C9H8O4) can be produced? 1.53 g 2.61 g 3.60 g 0.40g 2.82 g « < Question 7 of 36 A Moving to another question will save this response. 6:31 PM ②へロ) 3/26/2020 earch hp home end ins prt sc delete f12 f1 f10 fg II f8 f7 num <> backspace lock & 7. 96 %24

Chemistry
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ISBN:9781305957404
Author:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
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Aspırın (C9H804) (180.2 g/mol) is produced by the reaction of salicylic acid (C7H603) (138.1 g/mol) and acetic anhydride (C4H603) (102.1 g/mol).
C7H603(s)+ C4H603(1) → C9H8O4(s) + C2H4O2(1)
Suppose 2.00 g salicylic acid (C7H6O3) and 1.60 g acetic anhydride (C4H603) are mixed and allowed to react. What is the theoretical yield (in grams)
of Aspirin (C9H8O4) can be produced?
1.53 g
2.61 g
3.60 g
0.40g
2.82 g
« < Question 7 of 36
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Transcribed Image Text:Aspırın (C9H804) (180.2 g/mol) is produced by the reaction of salicylic acid (C7H603) (138.1 g/mol) and acetic anhydride (C4H603) (102.1 g/mol). C7H603(s)+ C4H603(1) → C9H8O4(s) + C2H4O2(1) Suppose 2.00 g salicylic acid (C7H6O3) and 1.60 g acetic anhydride (C4H603) are mixed and allowed to react. What is the theoretical yield (in grams) of Aspirin (C9H8O4) can be produced? 1.53 g 2.61 g 3.60 g 0.40g 2.82 g « < Question 7 of 36 A Moving to another question will save this response. 6:31 PM ②へロ) 3/26/2020 earch hp home end ins prt sc delete f12 f1 f10 fg II f8 f7 num <> backspace lock & 7. 96 %24
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