1. [CH3COOC2H5] = 0.22 M; [CH3COOH] = 0.010 M;B [С2H5ОН] — 0.010 М;B [H20] %3 0.10 М 2. [CHзCOOC2Hs] %3D 0.22 M; [СH3СООН] — 0.0020 M; [C2Н5ОН] — 0.10 М; [H20] 3D II 0.0020 М 3. [CH3COOC2H5] = 4.4 M; [CH3COOH] = %3D 0.88 M;B [С2H50Н] — 10.0 М;B [Н20]%3D 4.4 M

Chemistry & Chemical Reactivity
10th Edition
ISBN:9781337399074
Author:John C. Kotz, Paul M. Treichel, John Townsend, David Treichel
Publisher:John C. Kotz, Paul M. Treichel, John Townsend, David Treichel
Chapter13: Solutions And Their Behavior
Section13.5: Colloids
Problem 2.4ACP
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Ethyl acetate (CH3COOC2H5) was synthesized
by Sir Yowjin in a non-reacting solvent (not
water) according to the following reaction:
CH3COOH(aq) +
C2H5OH(ag) = CH3COOC2H5(aq) + H2O(aq)
For the following mixtures (1-3) that he made,
will the concentration of acetic acid
(CH3COOH) increase, decrease, or remain the
same as equilibrium is established?
(Keg for
the reaction = 2.2)
Transcribed Image Text:Ethyl acetate (CH3COOC2H5) was synthesized by Sir Yowjin in a non-reacting solvent (not water) according to the following reaction: CH3COOH(aq) + C2H5OH(ag) = CH3COOC2H5(aq) + H2O(aq) For the following mixtures (1-3) that he made, will the concentration of acetic acid (CH3COOH) increase, decrease, or remain the same as equilibrium is established? (Keg for the reaction = 2.2)
1. [CH3COOC2H5] = 0.22 M; [CH3COOH] =
0.010 M; [С2Н5ОН] — 0.010 M; [Н0] 3
0.10 М
2. [CH3COOC2H5] = 0.22 M; [CH3COOH] =
0.0020 M; [С2H5ОН] — 0.10 M%; [Н0]3
%3|
0.0020 М
3. [CH3COOC,H5] = 4.4 M; [CH3COOH] =
0.88 M; [C2H5ОН] — 10.0 М; [Н20] %3D4.4
M
Transcribed Image Text:1. [CH3COOC2H5] = 0.22 M; [CH3COOH] = 0.010 M; [С2Н5ОН] — 0.010 M; [Н0] 3 0.10 М 2. [CH3COOC2H5] = 0.22 M; [CH3COOH] = 0.0020 M; [С2H5ОН] — 0.10 M%; [Н0]3 %3| 0.0020 М 3. [CH3COOC,H5] = 4.4 M; [CH3COOH] = 0.88 M; [C2H5ОН] — 10.0 М; [Н20] %3D4.4 M
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