In which of the following octahedral complexes of Co (At. no. 27)

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 Multiple Choice QuestionsMultiple Choice Questions

381.

The oxidation states of Cr in [Cr(H2O)6]Cl3,[Cr(C6H6)2], and K2[Cr(CN)2 (O)2(O2)(NH3)] respectively are :

  • +3, +2, and +4

  • +3, 0, and +6

  • +3, 0, and +4

  • +3, +4, and +6


382.

Amongst [Ni(H2O)6]2+; [Ni(PPh3)2Cl2]; [Ni(CO)4] and [Ni(CN4)]2- the paramagnetic species are

  • [NiCl4]2-; [Ni(H2O)6]2+; [Ni(PPh3)2Cl2]

  • [Ni(CO)4]; [Ni(PPh3)2Cl2]; [NiCl4]2-

  • [Ni(CN4)]2- ; [Ni(H2O)6]2+ ; [NiCl4]2-

  • [Ni(PPh3)2Cl2] ; [Ni(CO)4]; [Ni(CN4)]2-


383.

Among the following metal carbonyls, the C- O bond order is lowest in

  • [Mn(CO)6]+

  • [Fe(CO)5]

  • [Cr(CO)6]

  • [V(CO)6]-


384.

Point out incorrect stability order

  • [Cu(NH3)4]2+ < [Cu(en)2]2+ < [Cu(trien)]2+

  • [Fe(H2O)6]3+ < [Fe(NO2)6]3- < [Fe(NH3)6]3+

  • [Co(H2O)6]3+ < [Rh(H2O)6]3+ < [Ir(H2O6]3+

  • [Cr(NH3)6]+ < [Cr(NH3)6]2+ < [Cr(NH3)6]3+


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385.

Which one of the following complexes is not expected to exhibit isomerism?

  • [Ni(NH3)4 (H2O)2]2+

  • [Pt(NH3)2Cl2]

  • [Ni(NH3)2Cl2]

  • [Ni(em)3]2+


386.

Which of the following carbonyls will have the strongest C-O bond?

  • Mn(CO)6+

  • Cr(CO)6

  • V(CO)6-

  • Fe(CO)5


387.

Which of the following complex compounds will exhibit highest paramagnetic behaviour? (At. no. Ti= 22, Cr= 24, Co= 27, Zn= 30)

  • [Ti(NH3)6]3+

  • [Cr((NH3)6]3+

  • [Co(NH3)6]3+

  • [ZN(NH3)6]2+


388.

Amongst Ni(CO)4, [Ni(CN)4]2- and [NiCl42-]

  • Ni(CO)4 and [NiCl42-] are diamagentic but [Ni(CN)4]2- is paramagnetic.

  • Ni(CO)4 and [Ni(CN)4]2- are diamagnetic but NiCl42- is paramagnetic.

  • NiCl42- and [Ni(CN)4]2- are diamagnetic but Ni(CO)4 is paramagnetic.

  • Ni(CO)4 is diamagnetic but NiCl42- and [Ni(CN)4]2- is paramagnetic.


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389.

In which of the following octahedral complexes of Co (At. no. 27), will the magnitude of  be the highest?

  • [Co(CN)6]3-

  • [Co(C2O4)3]3-

  • [Co(H2O)6]3+

  • [Co(NH3)6]3+


A.

[Co(CN)6]3-

Crystal field stabilisation energy (CFSE) for octahedral complex, depends on the strength of negative ligand. [Higher the strength more will be the CFSE] Spectrochemically it has been found that the strength of splitting is as :

CO-> CN- >NO2- > en >NH3> py > NCS-> H2O > O2- > ox2- >OH > F- > Cl- >SCN- >S2- >Br- >I-


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390.

The IUPAC name for the complex [Co(NO2)(NH3)5]Cl, is

  • nitrito-N-pentammine cobalt (III) chloride

  • nitrito-N-pentammine cobalt (II) chloride

  • pentaminenitrito-N-cobalt (II) chloride

  • pentaminenitrito-N-cobalt (III) chloride


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