The acid-dissociation constant for benzoic acid (CH₂COOH) is 6.3 x 10 5 ▾ Part A Calculate the equilibrium concentration of H3O+ in the solution if the initial concentration of C6H₂COOH is 0.087 M. Express your answer using two significant figures. V…ΑΣΦ H₂0¹ Submit ▾ Part B C6H₂COO Request Answer Submit Calculate the equilibrium concentration of C6H5COO in the solution if the initial concentration of C6H5COOH is 0.067 M. Express your answer using two significant figures. […] ΑΣΦ Request Answer P ? S M ? M

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Problem 16.61 - Enhanced - with Feedback
The acid-dissociation constant for benzoic acid (C6H5COOH) is
6.3 x 10-5
Part A
Calculate the equilibrium concentration of H3O* in the solution if the initial concentration of C6H5COOH is 0.067 M.
Express your answer using two significant figures.
VD|| ΑΣΦ
|H₂0¹] =
Submit
Part B
Request Answer
[C6H5COO™] =
Submit
3
Request Answer
O
G
Calculate the equilibrium concentration of C6H5COO in the solution if the initial concentration of C6H5COOH is 0.067 M.
Express your answer using two significant figures.
|||| ΑΣΦ
?
M
?
M
<21 of 43
Review | Constants | Periodic T
Transcribed Image Text:Problem 16.61 - Enhanced - with Feedback The acid-dissociation constant for benzoic acid (C6H5COOH) is 6.3 x 10-5 Part A Calculate the equilibrium concentration of H3O* in the solution if the initial concentration of C6H5COOH is 0.067 M. Express your answer using two significant figures. VD|| ΑΣΦ |H₂0¹] = Submit Part B Request Answer [C6H5COO™] = Submit 3 Request Answer O G Calculate the equilibrium concentration of C6H5COO in the solution if the initial concentration of C6H5COOH is 0.067 M. Express your answer using two significant figures. |||| ΑΣΦ ? M ? M <21 of 43 Review | Constants | Periodic T
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