Which of the following will form a basic buffer solution?

  • A
    $100 \ mL$ of $0.1 \ M$ $HCl + 100 \ mL$ of $0.1 \ M$ $NaOH$
  • B
    $100 \ mL$ of $0.1 \ M$ $CH_3COOH + 50 \ mL$ of $0.1 \ M$ $NaOH$
  • C
    $50 \ mL$ of $0.1 \ M$ $KOH + 25 \ mL$ of $0.1 \ M$ $CH_3COOH$
  • D
    $100 \ mL$ of $0.1 \ M$ $HCl + 200 \ mL$ of $0.1 \ M$ $NH_4OH$

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Similar Questions

Observe the following four solutions :
$P : 10 \ mL, 0.1 \ M \ NaOH + 5 \ mL, 0.1 \ M \ HCl$
$Q : 10 \ mL, 0.1 \ M \ NaOH + 15 \ mL, 0.1 \ M \ CH_3COOH$
$R : 10 \ mL, 0.1 \ M \ NH_3 + 10 \ mL, 0.1 \ M \ NH_4Cl$
$S : 10 \ mL, 0.05 \ M \ NaF + 5 \ mL, 0.1 \ M \ HF$
Which of above solutions act as buffer?

Calculate the $pH$ of a buffer solution containing $0.1 \text{ M } CH_3COOH$ and $0.1 \text{ M } CH_3COONa$ $[K_a = 1.8 \times 10^{-5}]$.

The $pH$ of blood is

Calculate the molar ratio of a weak acid $HA$ $(K_a=10^{-6})$ and its salt with a strong base,so that the $pH$ of the buffer solution is $6$.

$A$ buffer solution contains $0.1 \ mol$ of sodium acetate dissolved in $1000 \ cm^{3}$ of $0.1 \ M$ acetic acid. To the above buffer solution,$0.1 \ mol$ of sodium acetate is further added and dissolved. The $pH$ of the resulting buffer is

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