Determine the concentration of hydroxide ion, OH, in a particular solution of Bro by constructing an ICE table, writing the equilibrium constant expression, and using this information to determine the concentration of hydroxide ion. The Kb for BrO is 4.0 x 106. Complete Parts 1-3 before submitting your answer. NEXT > A 0.724 M aqueous solution of BrO was prepared. Fill in the ICE table with the appropriate value for each involved species to determine concentrations of all reactants and products. Initial (M) Change (M) Equilibrium (M) BrO (aq) 2 H₂O(1) 3 OH (aq) HBrO(aq)

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Show work, thank you! Part 1 is ICE table, part 2 is solving for Kb, and then part 3 is determining concentration of hydroxide ion, [OH-] in this solution, based off Ice table/Kb.
Determine the concentration of hydroxide ion, OH, in a particular solution of BrO
by constructing an ICE table, writing the equilibrium constant expression, and
using this information to determine the concentration of hydroxide ion. The Kb for
BrO is 4.0 x 106. Complete Parts 1-3 before submitting your answer.
3
NEXT >
A 0.724 M aqueous solution of BrO was prepared. Fill in the ICE table with the appropriate value
for each involved species to determine concentrations of all reactants and products.
Initial (M)
Change (M)
Equilibrium (M)
-2x
4.0 x 10°-2x
0
0.724 + x
BrO (aq)
0.724
0.724 - x
+
4.0 x 10.⁰
0.724 + 2x
2
H₂O(1)
0.362
0.724 - 2x
=
OH(aq)
+x
4.0 × 10 + x
4.0 x 10*- x
HBrO(aq)
RESET
+2x
4.0 x 10* + 2x
Transcribed Image Text:Determine the concentration of hydroxide ion, OH, in a particular solution of BrO by constructing an ICE table, writing the equilibrium constant expression, and using this information to determine the concentration of hydroxide ion. The Kb for BrO is 4.0 x 106. Complete Parts 1-3 before submitting your answer. 3 NEXT > A 0.724 M aqueous solution of BrO was prepared. Fill in the ICE table with the appropriate value for each involved species to determine concentrations of all reactants and products. Initial (M) Change (M) Equilibrium (M) -2x 4.0 x 10°-2x 0 0.724 + x BrO (aq) 0.724 0.724 - x + 4.0 x 10.⁰ 0.724 + 2x 2 H₂O(1) 0.362 0.724 - 2x = OH(aq) +x 4.0 × 10 + x 4.0 x 10*- x HBrO(aq) RESET +2x 4.0 x 10* + 2x
Determine the concentration of hydroxide ion, OH, in a particular solution of BrO
by constructing an ICE table, writing the equilibrium constant expression, and
using this information to determine the concentration of hydroxide ion. The Kb for
BrO is 4.0 x 106. Complete Parts 1-3 before submitting your answer.
[0]
[0.724 -x]
< PREV
1
2
day
Based on your ICE table and the definition of Kb, set up the expression for Kb in order to
determine the unknown concentration. Each reaction participant must be represented by one tile.
Do not combine terms.
[0.724]
[0.724 + 2x]
Kb =
[4.0 x 10*]
[0.724 - 2x]
[0.362]
[4.0 x 10*+x]
[x]
[4.0 x 10* -x]
3
= 4.0 x 10-6
[2x]
[4.0 x 10* + 2x]
[2x]²
NEXT
[4.0 x 10* - 2x]
RESET
>
[0.724 + x]
Transcribed Image Text:Determine the concentration of hydroxide ion, OH, in a particular solution of BrO by constructing an ICE table, writing the equilibrium constant expression, and using this information to determine the concentration of hydroxide ion. The Kb for BrO is 4.0 x 106. Complete Parts 1-3 before submitting your answer. [0] [0.724 -x] < PREV 1 2 day Based on your ICE table and the definition of Kb, set up the expression for Kb in order to determine the unknown concentration. Each reaction participant must be represented by one tile. Do not combine terms. [0.724] [0.724 + 2x] Kb = [4.0 x 10*] [0.724 - 2x] [0.362] [4.0 x 10*+x] [x] [4.0 x 10* -x] 3 = 4.0 x 10-6 [2x] [4.0 x 10* + 2x] [2x]² NEXT [4.0 x 10* - 2x] RESET > [0.724 + x]
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