9:20 1 .ll 5G E Question 13 of 25 Submit Determine concentration of OH- in a 0.60 M solution of HNO2 (Ka = 7.1 × 10-4). 1 2 3 > Based on your ICE table and definition of Ka, set up the expression for Ka in order to determine the unknown. Do not combine or simplify terms. Ka = = 7.1 x 10-4 5 RESET [0] [0.60] [7.1 x 10-4] [1.4 x 10-"] [0.30] [x] [2x] [0.60 + x] [0.60 - x] [0.60 + 2x] [0.60 - 2x] [1.4 x 10-11 + x] [1.4 x 10-11 - x] [1.4 x 10-11 + 2x] [1.4 x 10-11 - 2x]
9:20 1 .ll 5G E Question 13 of 25 Submit Determine concentration of OH- in a 0.60 M solution of HNO2 (Ka = 7.1 × 10-4). 1 2 3 > Based on your ICE table and definition of Ka, set up the expression for Ka in order to determine the unknown. Do not combine or simplify terms. Ka = = 7.1 x 10-4 5 RESET [0] [0.60] [7.1 x 10-4] [1.4 x 10-"] [0.30] [x] [2x] [0.60 + x] [0.60 - x] [0.60 + 2x] [0.60 - 2x] [1.4 x 10-11 + x] [1.4 x 10-11 - x] [1.4 x 10-11 + 2x] [1.4 x 10-11 - 2x]
Chemistry
10th Edition
ISBN:9781305957404
Author:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
Publisher:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
Chapter1: Chemical Foundations
Section: Chapter Questions
Problem 1RQ: Define and explain the differences between the following terms. a. law and theory b. theory and...
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Question
![9:20 1
| 5G E
Question 13 of 25
Submit
Determine concentration of OH in a 0.60 M
solution of HNO2 (Ka = 7.1 x 10-4).
1
2
3
Based on your ICE table and definition of Ka,
set up the expression for Ka in order to
determine the unknown. Do not combine or
simplify terms.
Ka =
= 7.1 x 10-4
5 RESET
[0]
[0.60]
[7.1 × 10-4]
[1.4 x 10-1"]
[0.30]
[x]
[2x]
[0.60 + x]
[0.60 - x]
[0.60 + 2x]
[0.60 - 2x]
[1.4 x 10-11 + x]
[1.4 x 10-11 - x]
[1.4 x 10-11 + 2x]
[1.4 x 10-11 - 2x]](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F339c79e1-db01-425a-979b-850e87e97e48%2F95b744de-a209-4842-a72e-c13ff00b4876%2F6e3qgbc_processed.png&w=3840&q=75)
Transcribed Image Text:9:20 1
| 5G E
Question 13 of 25
Submit
Determine concentration of OH in a 0.60 M
solution of HNO2 (Ka = 7.1 x 10-4).
1
2
3
Based on your ICE table and definition of Ka,
set up the expression for Ka in order to
determine the unknown. Do not combine or
simplify terms.
Ka =
= 7.1 x 10-4
5 RESET
[0]
[0.60]
[7.1 × 10-4]
[1.4 x 10-1"]
[0.30]
[x]
[2x]
[0.60 + x]
[0.60 - x]
[0.60 + 2x]
[0.60 - 2x]
[1.4 x 10-11 + x]
[1.4 x 10-11 - x]
[1.4 x 10-11 + 2x]
[1.4 x 10-11 - 2x]
![9:20 1
| 5G E
Question 13 of 25
Submit
Determine concentration of OH in a 0.60 M
solution of HNO2 (Ka = 7.1 x 10-4).
1
2
3
Based on the given values, set up ICE table in
order to determine the unknown.
HNO2(aq)+ H,O(1) =H;0*(aq) + NO, (aq)
Initial (M)
0.60
Change (M)
-X
+x
+x
Equilibrium
(M)
0.60 - x
+x
+x
5 RESET
0.60
7.1 × 10-4
1.4 x 10-11
0.30
+x
-X
+2x
-2x
0.60 + x
0.60 - x
0.60 + 2x
0.020 - 2x
1.4 × 10-1" + x
1.4 × 10-11 - x
1.4 x 10-11 + 2х
1.4 x 10-11 - 2x](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F339c79e1-db01-425a-979b-850e87e97e48%2F95b744de-a209-4842-a72e-c13ff00b4876%2Fh9phwds_processed.png&w=3840&q=75)
Transcribed Image Text:9:20 1
| 5G E
Question 13 of 25
Submit
Determine concentration of OH in a 0.60 M
solution of HNO2 (Ka = 7.1 x 10-4).
1
2
3
Based on the given values, set up ICE table in
order to determine the unknown.
HNO2(aq)+ H,O(1) =H;0*(aq) + NO, (aq)
Initial (M)
0.60
Change (M)
-X
+x
+x
Equilibrium
(M)
0.60 - x
+x
+x
5 RESET
0.60
7.1 × 10-4
1.4 x 10-11
0.30
+x
-X
+2x
-2x
0.60 + x
0.60 - x
0.60 + 2x
0.020 - 2x
1.4 × 10-1" + x
1.4 × 10-11 - x
1.4 x 10-11 + 2х
1.4 x 10-11 - 2x
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