In which of the following cases,$pH$ is greater than $7$?

  • A
    $50 \ mL$ of $0.1 \ M \ HCl + 50 \ mL$ of $0.1 \ M \ NaCl$
  • B
    $50 \ mL$ of $0.1 \ M \ H_2SO_4 + 50 \ mL$ of $0.2 \ M \ NaOH$
  • C
    $50 \ mL$ of $0.1 \ M \ CH_3COOH + 50 \ mL$ of $0.1 \ M \ KOH$
  • D
    $50 \ mL$ of $0.1 \ M \ HNO_3 + 50 \ mL$ of $0.1 \ M \ NH_3$

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The molar conductivity of $0.01 \text{ M}$ monobasic acid at $25 \text{ }^\circ\text{C}$ is $15 \text{ ohm}^{-1} \text{cm}^2 \text{mol}^{-1}$. The molar conductivity of the same acid at infinite dilution is $375 \text{ ohm}^{-1} \text{cm}^2 \text{mol}^{-1}$. Calculate $[H^+]$ in solution.

At $27^{\circ} C$,the degree of dissociation of $HA$ (weak acid) in $0.5 \ M$ of its solution is $1 \%$. The concentrations of $H_3O^{+}$,$A^{-}$,and $HA$ at equilibrium (in $mol \ L^{-1}$) are respectively

The hydrolysis constants of salts $M_1X$ and $M_2X$ formed from a strong acid and weak bases are $10^{-7}$ and $10^{-4}$ respectively. For base $M_3OH$,$K_b = 10^{-4}$. The decreasing order of basic strength is:

$A$ solution of $0.1 \ M$ weak base $(B)$ is titrated with $0.1 \ M$ of a strong acid $(HA)$. The variation of $pH$ of the solution with the volume of $HA$ added is shown in the figure below. What is the $pK_{b}$ of the base? The neutralization reaction is given by $B + HA \rightarrow BH^{+} + A^{-}$.

Which one is a mixed salt?

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