An acidic buffer solution can be prepared by mixing a solution of:

  • A
    Ammonium acetate and acetic acid
  • B
    Ammonium chloride and hydrochloric acid
  • C
    Sulphuric acid and sodium sulphate
  • D
    Acetic acid and sodium acetate

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Calculate the amount of $(NH_4)_2SO_4$ in grams which must be added to $500 \ mL$ of $0.200 \ M \ NH_3$ to yield a solution with $pH = 9.35$ ($K_b$ for $NH_3 = 1.78 \times 10^{-5}$).

Find $pH$ of the resultant solution formed by the addition of $500 \ mL$ $0.1 \ M$ $Ba(OH)_2$ and $500 \ mL$ $0.6 \ M$ $NH_4Cl$ in $1 \ L$ pure $H_2O$ at $25 \ ^oC$ (Use $\log \ 2 = 0.3$,$\log \ 3 = 0.5$,$\log \ 5 = 0.7$,$K_b(NH_3) = 10^{-5}$)

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Which of the following mixtures forms a buffer solution?

The acidic and basic strength of buffer solutions remains constant because ...

The $pK_a$ of an equimolar mixture of sodium acetate and acetic acid is $4.74$. What is the $pH$ of the solution?

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