Aspirin can be made in the laboratory by reacting acetic anhydride C 4 H 6 O 3 with salicylic acid C 7 H 6 O 3 to form aspirin C 9 H 8 O 4 and acetic acid C 2 H 4 O 2 . The balanced equation is: C 4 H 6 O 3 + C 7 H 6 O 3 → C 9 H 8 O 4 + C 2 H 4 O 2 In a laboratory synthesis, a student begins with 5.00 mL of acetic anhydride (density = 1.08g/mL) and 2.08 g of salicylic acid. Once the reaction is complete, student collects 2.01 g of aspirin. Determine the limiting reactant, theoretical yield of aspirin, and percent yield for the reaction
Aspirin can be made in the laboratory by reacting acetic anhydride C 4 H 6 O 3 with salicylic acid C 7 H 6 O 3 to form aspirin C 9 H 8 O 4 and acetic acid C 2 H 4 O 2 . The balanced equation is: C 4 H 6 O 3 + C 7 H 6 O 3 → C 9 H 8 O 4 + C 2 H 4 O 2 In a laboratory synthesis, a student begins with 5.00 mL of acetic anhydride (density = 1.08g/mL) and 2.08 g of salicylic acid. Once the reaction is complete, student collects 2.01 g of aspirin. Determine the limiting reactant, theoretical yield of aspirin, and percent yield for the reaction
Solution Summary: The author explains the limiting reactant, theoretical yield, and actual yield of the reaction between salicylic acid and acetic anhydride.
Aspirin can be made in the laboratory by reacting acetic anhydride
C
4
H
6
O
3
with salicylic acid
C
7
H
6
O
3
to form aspirin
C
9
H
8
O
4
and acetic acid
C
2
H
4
O
2
. The balanced equation is:
C
4
H
6
O
3
+
C
7
H
6
O
3
→
C
9
H
8
O
4
+
C
2
H
4
O
2
In a laboratory synthesis, a student begins with 5.00 mL of acetic anhydride (density = 1.08g/mL) and 2.08 g of salicylic acid. Once the reaction is complete, student collects 2.01 g of aspirin. Determine the limiting reactant, theoretical yield of aspirin, and percent yield for the reaction
Vnk the elements or compounds in the table below in decreasing order of their boiling points. That is, choose 1 next to the substance with the highest bolling
point, choose 2 next to the substance with the next highest boiling point, and so on.
substance
C
D
chemical symbol,
chemical formula
or Lewis structure.
CH,-N-CH,
CH,
H
H 10: H
C-C-H
H H H
Cale
H 10:
H-C-C-N-CH,
Bri
CH,
boiling point
(C)
Сен
(C) B
(Choose
Please help me find the 1/Time, Log [I^-] Log [S2O8^2-], Log(time) on the data table. With calculation steps. And the average for runs 1a-1b. Please help me thanks in advance. Will up vote!
Q1: Answer the questions for the reaction below:
..!! Br
OH
a) Predict the product(s) of the reaction.
b) Is the substrate optically active? Are the product(s) optically active as a mix?
c) Draw the curved arrow mechanism for the reaction.
d) What happens to the SN1 reaction rate in each of these instances:
1. Change the substrate to
Br
"CI
2. Change the substrate to
3. Change the solvent from 100% CH3CH2OH to 10% CH3CH2OH + 90% DMF
4. Increase the substrate concentration by 3-fold.
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