Determine the Ka for an acid by constructing an ICE table and using this information to construct and solve the equilibrium constant expression. Complete Parts 1-2 before submitting your answer. 1 NEXT > The pH for 0.0850 M solution of C6H5CH₂COOH is 2.68. Fill in the ICE table with the appropriate value for each involved species to determine the unknown concentrations of all reactants and products. Initial (M) Change (M) Equilibrium (M) C6H5CH₂COOH(aq) + H₂O(l) = 2 H3O+ (aq) + C6H5CH₂COO-(aq)
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![Determine the Ka for an acid by constructing an ICE table and using this information to
construct and solve the equilibrium constant expression. Complete Parts 1-2 before
submitting your answer.
NEXT >
The pH for 0.0850 M solution of C6H5CH₂COOH is 2.68. Fill in the ICE table with the appropriate value for
each involved species to determine the unknown concentrations of all reactants and products.
Initial (M)
Change (M)
Equilibrium (M)
-0.0829
C6H5CH₂COOH(aq) +
0
1
0.428
0.0850
-0.428
2.68
H₂O(l)
-2.68
=
2
HgO+(aq)
2.1 x 10-³
+ C6H5CH₂COO-(aq)
-2.1 x 10-3
RESET
0.0829](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Fb0140d99-b557-46d4-a2e7-675ca4b314d8%2F539fd241-7da8-4ab8-be3c-f80c1b4c2fed%2Fvz4khua_processed.jpeg&w=3840&q=75)
![Determine the Ka for an acid by constructing an ICE table and using this information to
construct and solve the equilibrium constant expression. Complete Parts 1-2 before
submitting your answer.
PREV
Based on your ICE table (Part 1) and the definition of Ka, set up the expression for Ka. Each reaction
participant must be represented by one tile. Do not combine terms.
Once the expression is constructed, solve for the Ka of C6H5CH₂COOH.
[0]
40
[0.0850]
0.025
Ka
1
=
[2.68]
5.3 x 10-5
[2.1 x 10-³]
[0.0829]
=
2
[0.428]
[4.79 x 10-12]
RESET
1.9 x 104](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Fb0140d99-b557-46d4-a2e7-675ca4b314d8%2F539fd241-7da8-4ab8-be3c-f80c1b4c2fed%2Fb46q4a_processed.jpeg&w=3840&q=75)
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