Ionic Equilibrium MCQ Questions & Answers in Physical Chemistry | Chemistry

Learn Ionic Equilibrium MCQ questions & answers in Physical Chemistry are available for students perparing for IIT-JEE, NEET, Engineering and Medical Enternace exam.

191. The concentration of $$\left[ {{H^ + }} \right]$$  and concentration of $$\left[ {O{H^ - }} \right]$$  of a $$0.1\,M$$  aqueous solution of $$2\% $$  ionised weak monobasic acid is
[ ionic product of water $$ = 1 \times {10^{ - 14}}$$   ]

A $$0.02 \times {10^{ - 3}}M\,{\text{and}}\,5 \times {10^{ - 11}}M$$
B $$1 \times {10^{ - 3}}M\,{\text{and}}\,3 \times {10^{ - 11}}M$$
C $$2 \times {10^{ - 3}}M\,{\text{and}}\,5 \times {10^{ - 12}}M$$
D $$3 \times {10^{ - 2}}M\,{\text{and}}\,4 \times {10^{ - 13}}M$$
Answer :   $$2 \times {10^{ - 3}}M\,{\text{and}}\,5 \times {10^{ - 12}}M$$

192. Which of the following are Lewis acids ?

A $$P{H_3}\,{\text{and}}\,BC{l_3}$$
B $$AlC{l_3}\,{\text{and}}\,SiC{l_4}$$
C $$P{H_3}\,{\text{and}}\,SiC{l_4}$$
D $$BC{l_3}\,{\text{and}}\,AlC{l_3}$$
Answer :   $$AlC{l_3}\,{\text{and}}\,SiC{l_4}$$

193. The concentration of hydroxyl ion in a solution left after mixing $$100\,mL$$  of $$0.1\,M\,MgC{l_2}$$   and $$100\,mL$$  of $$0.2\,M\,NaOH$$
$$\left( {{K_{sp}}\,{\text{of}}\,Mg{{\left( {OH} \right)}_2} = 1.2 \times {{10}^{ - 11}}} \right)$$       is

A $$2.8 \times {10^{ - 4}}$$
B $$2.8 \times {10^{ - 3}}$$
C $$2.8 \times {10^{ - 2}}$$
D $$2.8 \times {10^{ - 5}}$$
Answer :   $$2.8 \times {10^{ - 4}}$$

194. Which has highest $$pH?$$

A $$C{H_3}C{O^ - }O{K^ + }$$
B $$N{a_2}C{O_3}$$
C $$N{H_4}Cl$$
D $$NaN{O_3}$$
Answer :   $$N{a_2}C{O_3}$$

195. Which of the following fluoro-compounds is most likely to behave as a Lewis base?

A $$B{F_3}$$
B $$P{F_3}$$
C $$C{F_4}$$
D $$Si{F_4}$$
Answer :   $$P{F_3}$$

196. According to Lewis concept, an acid is a/an

A proton donor
B electron pair donor
C proton acceptor
D electron pair acceptor
Answer :   electron pair acceptor

197. The percentage of pyridine $$\left( {{C_5}{H_5}N} \right)$$  that forms pyridinium ion $$\left( {{C_5}{H_5}{N^ + }H} \right)$$   in a $$0.10\,M$$  aqueous pyridine solution ( $${K_b}$$  for $${C_5}{H_5}N = 1.7 \times {10^{ - 9}}$$     ) is

A 0.0060%
B 0.013%
C 0.77%
D 1.6%
Answer :   0.013%

198. Solution of $$0.1\,N\,N{H_4}OH$$    and $$0.1\,N\,N{H_4}Cl$$    has $$pH$$  9.25, then find out $$p{K_b}$$  of $$N{H_4}OH.$$

A 9.25
B 4.75
C 3.75
D 8.25
Answer :   4.75

199. The molar solubility $$\left( {{\text{in}}\,mol\,{L^{ - 1}}} \right)$$   of a sparingly soluble salt $$M{X_4}$$  is $$'s'.$$  The corresponding solubility product is $${K_{sp}}.$$  $$'s'$$ is given in term of $${K_{sp}}$$  by the relation :

A $$s = {\left( {256{K_{sp}}} \right)^{\frac{1}{5}}}$$
B $$s = {\left( {128{K_{sp}}} \right)^{\frac{1}{4}}}$$
C $$s = {\left( {\frac{{{K_{sp}}}}{{128}}} \right)^{\frac{1}{4}}}$$
D $$s = {\left( {\frac{{{K_{sp}}}}{{256}}} \right)^{\frac{1}{5}}}$$
Answer :   $$s = {\left( {\frac{{{K_{sp}}}}{{256}}} \right)^{\frac{1}{5}}}$$

200. The $$pH$$  of neutral water at $$25{\,^ \circ }C$$  is 7.0. As the temperature increases, ionisation of water increases, however, the concentration of $${H^ + }$$  ions and $$O{H^ - }$$  ions are equal. What will be the $$pH$$  of pure water at $$60{\,^ \circ }C?$$

A Equal to 7.0
B Greater than 7.0
C Less than 7.0
D Equal to zero
Answer :   Less than 7.0