QUESTION 27 In a 1.00 M aqueous solution of sulfuric acid, H₂SO4, what is the sulfate (SO42) concentration at equilibrium? 1. H₂SO4 (aq) + H₂0 (1) H30* (aq) + HSO4 (aq) 2. HSO4 (aq) + H₂O (1) <> H3O+ (aq) + SO4²- (aq) 3.2 H₂0 (aq) <> H30* (aq) + OH¯ (aq) O 0.500 M O 0.109 M O 1.00 M O 0.012 M QUESTION 28 L Ka2 = 0.012 Kw=1.0 x 10-14 Check all that is true for a buffer solution. The pH of a buffer solution can be determined by the Henderson-Hasselbalch equation Click Save and Submit to save and submit. Click Save All Answers to save all answers.

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O Eq3 only
QUESTION 27
In a 1.00 M aqueous solution of sulfuric acid, H₂SO4, what is the sulfate (SO42-) concentration at equilibrium?
1. H₂SO4 (aq) + H₂O (1) --> H30+ (aq) + HSO4 (aq)
2. HSO4 (aq) + H₂O (1) <-> H3O+ (aq) + SO4²- (aq)
3. 2 H2O (aq)
<-> H30* (aq) + OH- (aq)
O 0.500 M
O 0.109 M
O 1.00 M
O 0,012 M
#3
QUESTION 28
Check all that is true for a buffer solution.
The pH of a buffer solution can be determined by the Henderson-Hasselbalch equation
54
Click Save and Submit to save and submit. Click Save All Answers to save all answers.
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Transcribed Image Text:O Eq3 only QUESTION 27 In a 1.00 M aqueous solution of sulfuric acid, H₂SO4, what is the sulfate (SO42-) concentration at equilibrium? 1. H₂SO4 (aq) + H₂O (1) --> H30+ (aq) + HSO4 (aq) 2. HSO4 (aq) + H₂O (1) <-> H3O+ (aq) + SO4²- (aq) 3. 2 H2O (aq) <-> H30* (aq) + OH- (aq) O 0.500 M O 0.109 M O 1.00 M O 0,012 M #3 QUESTION 28 Check all that is true for a buffer solution. The pH of a buffer solution can be determined by the Henderson-Hasselbalch equation 54 Click Save and Submit to save and submit. Click Save All Answers to save all answers. 4 fs % 4 5 f6 Ka2 = 0.012 Kw=1.0 x 10-14 6 87 & f8 4 7 fg * 00 8 8 f10: num Ik 9 .9
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