Ionic Equilibrium MCQ Questions & Answers in Physical Chemistry | Chemistry

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151. In aqueous solution the ionization constants for carbonic acid are $${K_1} = 4.2 \times {10^{ - 7}}$$   and $${K_2} = 4.8 \times {10^{ - 11}}.$$    Select the correct statement for a saturated 0.034 M solution of the carbonic acid.

A The concentration of $$CO_3^{2 - }$$  is $$0.034\,M.$$
B The concentration of $$CO_3^{2 - }$$  is greater than that of $$HCO_3^ - .$$
C The concentrations of $${H^ + }$$ and $$HCO_3^ - $$  are approximately equal.
D The concentration of $${H^ + }$$ is double that of $$CO_3^{2 - }.$$
Answer :   The concentrations of $${H^ + }$$ and $$HCO_3^ - $$  are approximately equal.

152. A $$0.004 M$$  solution of $$N{a_2}S{O_4}$$  is isotonic with $$0.010 M$$  solution of glucose at same temperature. The percentage dissociation of $$N{a_2}S{O_4}$$  is

A 25 %
B 50 %
C 75 %
D 85 %
Answer :   75 %

153. What will be the solubility of $$AgCl$$  in $$0.05\,M\,NaCl$$   aqueous solution if solubility product of $$AgCl$$  is $$1.5 \times {10^{ - 10}}?$$

A $$3 \times {10^{ - 9}}\,mol\,{L^{ - 1}}$$
B $$0.05\,mol\,{L^{ - 1}}$$
C $$1.5 \times {10^{ - 5}}\,mol\,{L^{ - 1}}$$
D $$3 \times {10^9}\,mol\,{L^{ - 1}}$$
Answer :   $$3 \times {10^{ - 9}}\,mol\,{L^{ - 1}}$$

154. Solid $$Ba{\left( {N{O_3}} \right)_2}$$   is gradually dissolved in a $$1.0 \times {10^{ - 4}}M\,N{a_2}C{O_3}$$     solution. At what concentration of $$B{a^{2 + }}$$  will a precipitate begin to form ? ( $${K_{sp}}$$  for for $$BaC{O_3} = 5.1 \times {10^{ - 9}}$$     )

A $$5.1 \times {10^{ - 5}}M$$
B $$8.1 \times {10^{ - 8}}M$$
C $$8.1 \times {10^{ - 7}}M$$
D $$4.1 \times {10^{ - 5}}M$$
Answer :   $$5.1 \times {10^{ - 5}}M$$

155. When equal volumes of the following solutions are mixed, precipitation of $$AgCl\left( {{K_{sp}} = 1.8 \times {{10}^{ - 10}}} \right)$$     will occur only with

A $${10^{ - 4}}M\left( {A{g^ + }} \right)\,{\text{and}}\,{10^{ - 4}}M\left( {C{l^ - }} \right)$$
B $${10^{ - 5}}M\left( {A{g^ + }} \right)\,{\text{and}}\,{10^{ - 5}}M\left( {C{l^ - }} \right)$$
C $${10^{ - 6}}M\left( {A{g^ + }} \right)\,{\text{and}}\,{10^{ - 6}}M\left( {C{l^ - }} \right)$$
D $${10^{ - 10}}M\left( {A{g^ + }} \right)\,{\text{and}}\,{10^{ - 10}}M\left( {C{l^ - }} \right)$$
Answer :   $${10^{ - 4}}M\left( {A{g^ + }} \right)\,{\text{and}}\,{10^{ - 4}}M\left( {C{l^ - }} \right)$$

156. What is the $$\left[ {O{H^ - }} \right]$$  in the final solution prepared by mixing $$20.0$$ $$mL$$  of $$0.050\,M\,HCl$$    with $$30.0\,mL$$   of $$0.10\,M\,Ba{\left( {OH} \right)_2}?$$

A 0.10$$\,M$$
B 0.40$$\,M$$
C 0.0050$$\,M$$
D 0.12$$\,M$$
Answer :   0.10$$\,M$$

157. The degree of dissociation of $$0.1M$$  weak acid $$HA$$  is $$0.5\% .$$  If $$2\,mL$$  of $$1.0\,M\,HA$$   solution is diluted to $$32\,mL$$  the degree of dissociation of acid and $${H_3}{O^ + }\,ion$$  concentration in the resulting solution will be respectively

A $$0.02\,{\text{and}}\,3.125 \times {10^{ - 4}}$$
B $$1.25 \times {10^{ - 3}}\,{\text{and}}\,0.02$$
C $$0.02\,{\text{and}}\,1.25 \times {10^{ - 3}}$$
D $$0.02\,{\text{and}}\,8.0 \times {10^{ - 12}}$$
Answer :   $$0.02\,{\text{and}}\,1.25 \times {10^{ - 3}}$$

158. Which of the following will produce a buffer solution when mixed in equal volumes?

A $$0.1\,mol\,d{m^{ - 3}}\,N{H_4}OH\,\,{\text{and}}$$      $$0.1\,mol\,d{m^{ - 3}}\,HCl$$
B $$0.05\,mol\,d{m^{ - 3}}\,N{H_4}OH\,\,{\text{and}}$$      $$0.1\,mol\,d{m^{ - 3}}\,HCl$$
C $$0.1\,mol\,d{m^{ - 3}}\,N{H_4}OH\,\,{\text{and}}$$      $$0.05\,mol\,d{m^{ - 3}}\,HCl$$
D $$0.1\,mol\,d{m^{ - 3}}\,C{H_3}COONa\,\,{\text{and}}$$       $$0.1\,mol\,d{m^{ - 3}}\,NaOH$$
Answer :   $$0.1\,mol\,d{m^{ - 3}}\,N{H_4}OH\,\,{\text{and}}$$      $$0.05\,mol\,d{m^{ - 3}}\,HCl$$

159. Predict if there will be any precipitate by mixing $$50\,mL$$  of $$0.01\,M\,NaCl$$    and $$50\,mL$$  of $$0.01\,M\,AgN{O_3}$$    solution. The solubility product of $$AgCl$$  is $$1.5 \times {10^{ - 10}}.$$

A Since ionic product is greater than solubility product no precipitate will be formed.
B Since ionic product is lesser than solubility product, precipitation will occur.
C Since ionic product is greater than solubility product, precipitation will occur.
D Since ionic product and solubility product are same, precipitation will not occur.
Answer :   Since ionic product is greater than solubility product, precipitation will occur.

160. The degree of ionisation of an acid $$HA$$  is 0.00001 at $$0.1\,M$$  concentration. Its dissociation constant will be

A $${10^{ - 9}}$$
B $${10^{ - 11}}$$
C $${10^{ - 8}}$$
D $${10^{ - 7}}$$
Answer :   $${10^{ - 11}}$$