PQ-2. The reaction between acetone and bromine in acidic solution is represented the equation: Exp 1 2 3 4 Based on these data, the experimental rate law is rate=k[CH3COCH3][Br₂][H3O*] CH3COCH3(aq) + Br₂(aq) + H3O+(aq) → products The tabulated kinetic data were gathered. (A) (C) rate=k[H3O+]² [CH3COCH3] [Br2]o/ [H3O+]o/ Initial Rate /M M M 0.30 0.050 0.050 0.30 0.100 0.050 0.30 0.050 0.100 0.40 0.050 0.200 (B) rate= k[CH3COCH3][H3O*] (D) rate = k[CH3COCH₂][Br₂] /M-s¹ 5.8x10-5 5.8x10-5 1.2×104 3.2×104

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Chapter1: Chemical Foundations
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Problem 1RQ: Define and explain the differences between the following terms. a. law and theory b. theory and...
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PQ-2. The reaction between acetone and bromine
in acidic solution is represented by the
equation:
Exp
1
2
3
4
Based on these data, the experimental rate law is
CH3COCH3(aq) + Br₂(aq) + H3O+ (aq) →
products
The tabulated kinetic data were gathered.
(A) rate= k[CH3COCH3][Br₂][H3O+]
(C) rate=k[H3O+]²
[CH3COCH3] [Br2]0/ [H3O+]o/ Initial Rate
/M
M
M
0.30
0.050
0.050
0.30
0.100
0.050
0.30
0.050
0.100
0.40
0.050
0.200
(B) rate = k[CH3COCH3][H3O+]
(D) rate = k[CH3COCH3][Br₂]
/M.s¹
5.8x10-5
5.8x10-5
1.2×10 4
3.2×104
Transcribed Image Text:PQ-2. The reaction between acetone and bromine in acidic solution is represented by the equation: Exp 1 2 3 4 Based on these data, the experimental rate law is CH3COCH3(aq) + Br₂(aq) + H3O+ (aq) → products The tabulated kinetic data were gathered. (A) rate= k[CH3COCH3][Br₂][H3O+] (C) rate=k[H3O+]² [CH3COCH3] [Br2]0/ [H3O+]o/ Initial Rate /M M M 0.30 0.050 0.050 0.30 0.100 0.050 0.30 0.050 0.100 0.40 0.050 0.200 (B) rate = k[CH3COCH3][H3O+] (D) rate = k[CH3COCH3][Br₂] /M.s¹ 5.8x10-5 5.8x10-5 1.2×10 4 3.2×104
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