Co - ordination Compounds MCQ Questions & Answers in Inorganic Chemistry | Chemistry

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341. A solution containing $$2.675\,g$$   of $$CoC{l_3}.6N{H_3}$$     $$\left( {{\text{molar mass}} = 267.5\,g\,mo{l^{ - 1}}} \right)$$       is passed through a cation exchanger. The chloride ions obtained in solution were treated with excess of $$AgN{O_3}$$  to give $$4.78\,g$$  of $$AgCl$$  $$\left( {{\text{molar mass}} = 143.5\,g\,mo{l^{ - 1}}} \right).$$       The formula of the complex is

A $$\left[ {Co{{\left( {N{H_3}} \right)}_6}} \right]C{l_3}$$
B $$\left[ {CoC{l_2}{{\left( {N{H_3}} \right)}_4}} \right]Cl$$
C $$\left[ {CoC{l_3}{{\left( {N{H_3}} \right)}_3}} \right]$$
D $$\left[ {CoCl{{\left( {N{H_3}} \right)}_5}} \right]C{l_2}$$
Answer :   $$\left[ {Co{{\left( {N{H_3}} \right)}_6}} \right]C{l_3}$$

342. Which one of the following complexes will most likely absorb visible light ?
$${\text{(At nos}}{\text{. }}Sc = 21,Ti = 22,V = 23,Zn = 30\,)$$

A $${\left[ {Sc{{\left( {{H_2}O} \right)}_6}} \right]^{3 + }}$$
B $${\left[ {Ti{{\left( {N{H_3}} \right)}_6}} \right]^{4 + }}$$
C $${\left[ {V{{\left( {N{H_3}} \right)}_6}} \right]^{3 + }}$$
D $${\left[ {Zn{{\left( {N{H_3}} \right)}_6}} \right]^{2 + }}$$
Answer :   $${\left[ {V{{\left( {N{H_3}} \right)}_6}} \right]^{3 + }}$$

343. Mark the correct labelling of different terms used in coordination compounds :
Co-ordination Compounds mcq question image

A (i) Central atom, (ii) Ionisation sphere, (iii) Coordination number, (iv) Ligands
B (i) Ligands, (ii) Coordination number, (iii) Valency, (iv) Ionisation sphere
C (i) Ionisation sphere, (ii) Ligands, (iii) Coordination number, (iv) Central atom
D (i) Ligands, (ii) Ionisation sphere, (iii) Coordination number, (iv) Central atom
Answer :   (i) Ligands, (ii) Ionisation sphere, (iii) Coordination number, (iv) Central atom

344. Coordination number of $$Cr$$  is six. A complex with $${C_2}O_4^{2 - },en$$    and superoxide $$O_2^ - $$  will be in the ratio to make complex $${\left[ {Cr{{\left( {{C_2}{O_4}} \right)}_x},{{\left( {en} \right)}_y}{{\left( {{O_2}} \right)}_z}} \right]^ - }$$
Co-ordination Compounds mcq question image

A (a)
B (b)
C (c)
D (d)
Answer :   (d)

345. Three arrangements are shown for the complex, $${\left[ {Co\left( {en} \right){{\left( {N{H_3}} \right)}_2}B{r_2}} \right]^ + }.$$     Which one is the wrong statement?
Co-ordination Compounds mcq question image

A I and II are geometrical isomers.
B II and III are optical isomers.
C I and III are optical isomers.
D II and III are geometrical isomers.
Answer :   II and III are optical isomers.

346. For $$\left[ {C{o_2}{{\left( {CO} \right)}_8}} \right],$$   what is the total number of metal - carbon bonds and number of metal-metal bonds.

A 10 ,1
B 8, 2
C 8, 1
D 10, 0
Answer :   10 ,1

347. Which one of the following complexes is an outer orbital complex ?
$${\text{(Atomic nos}}{\text{. : }}Mn = 25;Fe = 26;Co = 27,Ni = 28\,)$$

A $${\left[ {Co{{\left( {N{H_3}} \right)}_6}} \right]^{3 + }}$$
B $${\left[ {Mn{{\left( {CN} \right)}_6}} \right]^{4 - }}$$
C $${\left[ {Fe{{\left( {CN} \right)}_6}} \right]^{4 - }}$$
D $${\left[ {Ni{{\left( {N{H_3}} \right)}_6}} \right]^{2 + }}$$
Answer :   $${\left[ {Ni{{\left( {N{H_3}} \right)}_6}} \right]^{2 + }}$$

348. Select the complex that can be reduced most easily.

A $$Ni{\left( {CO} \right)_4}$$
B $$Cr{\left( {CO} \right)_6}$$
C $$V{\left( {CO} \right)_6}$$
D $$Fe{\left( {CO} \right)_5}$$
Answer :   $$V{\left( {CO} \right)_6}$$

349. Which is not $$\pi - $$  bonded complex ?

A Zeise’s salt
B Ferrocene
C Dibenzene chromiun
D Tetraethyl lead
Answer :   Tetraethyl lead

350. Which of the following organometallic compounds is $$\sigma $$  and $$\pi $$ - bonded ?

A $$\left[ {Fe{{\left( {{\eta ^5} - {C_5}{H_5}} \right)}_2}} \right]$$
B $$K\left[ {PtC{l_3}\left( {{\eta ^2} - {C_2}{H_4}} \right)} \right]$$
C $${\left[ {Co{{\left( {CO} \right)}_5}N{H_3}} \right]^{2 + }}$$
D $$Fe{\left( {C{H_3}} \right)_3}$$
Answer :   $${\left[ {Co{{\left( {CO} \right)}_5}N{H_3}} \right]^{2 + }}$$