Chemistry
Chemistry
10th Edition
ISBN: 9781305957404
Author: Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
Publisher: Cengage Learning
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Verizon
7:54 PM
O 39%
Question 13 of 16
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The molar solubility of Cu(IO3)2 is 2.7 x 10-3 M at a
certain temperature. Determine the value of Ksp
for Cu(lO3)2.
1
2
Based on the set up of your ICE table, construct
the expression for Ksp and then evaluate it. Do
not combine or simplify terms.
Ksp
5 RESET
[0]
[2.7 x 10-3]
[5.4 x 10-]
[2.7 x 10-3]²
[5.4 x 10-3]?
[x]
[2x]?
[2.7 x 10-3 + x]
[2.7 x 10-3 + 2x]²
[2.7 x 10-3 - x]
[2.7 x 10-3 - 2x]?
[5.4 x 10-3 + x]
[5.4 x 10-3 + 2x]?
[5.4 x 10-3 - x]
[5.4 × 10-3 - 2x]²
2.7 x 10-3
2.0 x 10-8
1.5 x 10-5
7.9 x 10-8
1.6 x 10-7
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Transcribed Image Text:Verizon 7:54 PM O 39% Question 13 of 16 Submit The molar solubility of Cu(IO3)2 is 2.7 x 10-3 M at a certain temperature. Determine the value of Ksp for Cu(lO3)2. 1 2 Based on the set up of your ICE table, construct the expression for Ksp and then evaluate it. Do not combine or simplify terms. Ksp 5 RESET [0] [2.7 x 10-3] [5.4 x 10-] [2.7 x 10-3]² [5.4 x 10-3]? [x] [2x]? [2.7 x 10-3 + x] [2.7 x 10-3 + 2x]² [2.7 x 10-3 - x] [2.7 x 10-3 - 2x]? [5.4 x 10-3 + x] [5.4 x 10-3 + 2x]? [5.4 x 10-3 - x] [5.4 × 10-3 - 2x]² 2.7 x 10-3 2.0 x 10-8 1.5 x 10-5 7.9 x 10-8 1.6 x 10-7
Verizon
7:54 PM
O 39%
Question 13 of 16
Submit
The molar solubility of Cu(IO3)2 is 2.7 x 10-3 M at a
certain temperature. Determine the value of Ksp
for Cu(1O3)2.
1
2
Based on the given values, fill in the ICE table to
determine concentrations of all reactants and
products.
Cu(103)2(s)
Cu²*(aq)
2 103 (aq)
+
Initial (M)
Change (M)
Equilibrium (M)
5 RESET
2.7 x 10-3
-2.7 x 10-3
5.4 x 10-3
-5.4 x 10-3
+x
+2x
-X
-2x
2.7 x 10-3 + x
2.7 x 10-3 + 2x
2.7 x 10-3 - x
2.7 x 10-3 - 2x
5.4 x 10-3 + x
5.4 x 10-3 + 2x
5.4 x 10-3 - x
5.4 x 10-3 - 2x
expand button
Transcribed Image Text:Verizon 7:54 PM O 39% Question 13 of 16 Submit The molar solubility of Cu(IO3)2 is 2.7 x 10-3 M at a certain temperature. Determine the value of Ksp for Cu(1O3)2. 1 2 Based on the given values, fill in the ICE table to determine concentrations of all reactants and products. Cu(103)2(s) Cu²*(aq) 2 103 (aq) + Initial (M) Change (M) Equilibrium (M) 5 RESET 2.7 x 10-3 -2.7 x 10-3 5.4 x 10-3 -5.4 x 10-3 +x +2x -X -2x 2.7 x 10-3 + x 2.7 x 10-3 + 2x 2.7 x 10-3 - x 2.7 x 10-3 - 2x 5.4 x 10-3 + x 5.4 x 10-3 + 2x 5.4 x 10-3 - x 5.4 x 10-3 - 2x
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