MISSED THIS? Read Section 18.4 (Page): Watch KCV 18.48. Consider the curve shown here for the titration of a weak monoprotic acid with a strong base. Hd 14 12 10- 8. 6- 4- 2 0 0 40 80 120 160 Volume of base added (mL) What is the pr Express your answer as an integer. pH = 9 Submit ✔ Correct The equivalence point is the point in the titration when the number of moles of base is stoichiometrically equal to the number of moles of acid. The equivalence point is located at the point of inflection in the middle of the titration curve. For the given curve, the pH at the equivalence point is 9. ▾ Part B What is the volume of added base at the equivalence point? Express your answer in milliliters as an integer. V = 60 mL Submit ✓ Previous Answers ▾ Part C V= Previous Answers Correct The equivalence point is the point in the titration when the number of moles of base is stoichiometrically equal the number of moles of acid. The equivalence point is located at the point of inflection in the middle of the titration curve. For the presented curve, the volume of added base at the equivalence point is 60 mL. At what volume of added base is the pH calculated by working an equilibrium problem based on the initial concentrat and K₂ of the weak acid? Express your answer in milliliters as an integer. ΙΠΙ ΑΣΦ ? ml.

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stering.pearson.com/?courseld=124 9997 key
MISSED THIS? Read Section 18.4 (Page); Watch
KCV 18.48
Consider the curve shown here for the titration of a
weak monoprotic acid with a strong base.
Hd
14
12
10
8
2
6420
0
40
80
120
160
Volume of base added (mL)
▼
What is the pH at the equivalence point?
Express your answer as an integer.
pH = 9
Submit
✓ Correct
The equivalence point is the point in the titration when the number of moles of base is stoichiometrically equal to
the number of moles of acid. The equivalence point is located at the point of inflection in the middle of the
titration curve. For the given curve, the pH at the equivalence point is 9.
Part B
What is the volume of added base at the equivalence point?
Express your answer in milliliters as an integer.
V = 60 mL
Submit
Previous Answers
Part C
Previous Answers
✓ Correct
The equivalence point is the point in the titration when the number of moles of base is stoichiometrically equal t
the number of moles of acid. The equivalence point is located at the point of inflection in the middle of the
titration curve. For the presented curve, the volume of added base at the equivalence point is 60 mL.
V =
At what volume of added base is the pH calculated by working an equilibrium problem based on the initial concentrati
and Ka of the weak acid?
Express your answer in milliliters as an integer.
VE ΑΣΦ
→ 0
*****
*****
J
?
mL
Transcribed Image Text:stering.pearson.com/?courseld=124 9997 key MISSED THIS? Read Section 18.4 (Page); Watch KCV 18.48 Consider the curve shown here for the titration of a weak monoprotic acid with a strong base. Hd 14 12 10 8 2 6420 0 40 80 120 160 Volume of base added (mL) ▼ What is the pH at the equivalence point? Express your answer as an integer. pH = 9 Submit ✓ Correct The equivalence point is the point in the titration when the number of moles of base is stoichiometrically equal to the number of moles of acid. The equivalence point is located at the point of inflection in the middle of the titration curve. For the given curve, the pH at the equivalence point is 9. Part B What is the volume of added base at the equivalence point? Express your answer in milliliters as an integer. V = 60 mL Submit Previous Answers Part C Previous Answers ✓ Correct The equivalence point is the point in the titration when the number of moles of base is stoichiometrically equal t the number of moles of acid. The equivalence point is located at the point of inflection in the middle of the titration curve. For the presented curve, the volume of added base at the equivalence point is 60 mL. V = At what volume of added base is the pH calculated by working an equilibrium problem based on the initial concentrati and Ka of the weak acid? Express your answer in milliliters as an integer. VE ΑΣΦ → 0 ***** ***** J ? mL
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