added from the burette is used up. 2. In the titration of a strong acid with a strong base, the pH of mixture after equivalence point is find out by formula:    A.  pH = - log[H+]  B.  [OH-] = (NbVb – NaVa) / (Va + Vb)  C.  pOH = - log[OH-] + log ([BH+]/[B])  D.  [H+] = (NaVa – NbVb) / (Va + Vb) 3.

Chemistry
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ISBN:9781305957404
Author:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
Publisher:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
Chapter1: Chemical Foundations
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1.The endpoint of an acid-base titration is defined as the point where _____

 
 A. The number of moles of acid and base are equal.
  •  B. Excess titrant is present.
  •  C. The amount (moles) of acid and base present are equivalent and a physio-chemical change occurs.
  •  D. All the base added from the burette is used up.

2.

In the titration of a strong acid with a strong base, the pH of mixture after equivalence point is find out by formula:

 
  •  A. 

    pH = - log[H+]

  •  B. 

    [OH-] = (NbVb – NaVa) / (Va + Vb)

  •  C. 

    pOH = - log[OH-] + log ([BH+]/[B])

  •  D. 

    [H+] = (NaVa – NbVb) / (Va + Vb)

3. 

Determine the pH of a 0.352 M NaOH solution.

 
  •  A. 

    13.54

  •  B. 

    0.45

  •  C. 

    0.352

  •  D. 

    12

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