Buffer solutions have constant acidity and alkalinity because

  • A
    these give unionised acid or base on reaction with added acid or alkali
  • B
    acids and alkalies in these solutions are shielded from attack by other ions
  • C
    they have large excess of $H^{+}$ or $OH^{-}$ ions
  • D
    they have fixed value of $pH$.

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Similar Questions

$A$ buffer solution contains $100 \ mL$ of $0.01 \ M \ CH_3COOH$ and $200 \ mL$ of $0.02 \ M \ CH_3COONa$. If $700 \ mL$ of $1 \ M \ NaCl$ is added,what are the $pH$ values before and after the addition? $(pK_a = 4.74)$

The $pH$ of a buffer solution made by mixing $25 \ mL$ of $0.02 \ M$ $NH_4OH$ and $25 \ mL$ of $0.2 \ M$ $NH_4Cl$ at $25^{\circ}C$ is ($pK_b$ of $NH_4OH = 4.8$).

$A$ buffer solution is prepared by mixing $0.2 \ M \ NH_4OH$ and $1 \ M \ NH_4Cl$. What is the $pH$ value of the buffer solution? (Given $pK_b = 4.744$)

Which of the following solutions will act as a buffer solution?

What is the total number of buffers formed during the titration of $H_3PO_4$ with $NaOH$?

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