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Arrange the following complexes in the i...

Arrange the following complexes in the increasing order of conductivity of their solution
`[Co(NH_(3))_(3)Cl_(3)], [Co(NH_(3))_(4)Cl_(2)]Cl, [Co(NH_(3))_(6)]Cl_(3), [Cr(NH_(3))_(5)Cl] Cl_(2)`

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To arrange the given complexes in the increasing order of conductivity of their solutions, we need to determine the number of ions produced when each complex is dissolved in water. The conductivity of a solution is directly proportional to the number of ions present; more ions result in higher conductivity. Let's analyze each complex: 1. **[Co(NH₃)₃Cl₃]**: - This complex will dissociate into 1 complex ion [Co(NH₃)₃]³⁺ and 3 Cl⁻ ions. - Total ions = 1 + 3 = 4 ions. ...
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Arrange the following complexes in the increasing order of conductivity of their solution: [Co(NH_(3))_(3)Cl_(3)], [Co(NH_(3))4Cl_(2)]Cl, [Co(NH_(3))_(6)]Cl_(3), [Cr(NH_(3))5Cl]Cl_(2) .

Arrange the following complexes in order of increasing electrical conductivity : [Co(NH_(3))_(3)Cl_(3)],[Co(NH_(3))_(5)Cl]Cl_(2),[Co(NH_(3))_(6)]Cl_(3),[Co(NH_(3))_(4)Cl_(2)]Cl

Knowledge Check

  • [Co(NH_(3))_(4)Cl_(2)]Cl exhibits

    A
    Optical isomerism
    B
    ionisation isomerism
    C
    linkage isomerism
    D
    geometrical isomerism
  • [Co(NH_(3))_(4)Cl_(2)]Cl exhibits

    A
    Ionisation isomerism
    B
    Linkage isomerism
    C
    Geometrical isomerism
    D
    Optical isomerism
  • [Co(NH_(3))_(4)Cl_(2)]Cl exhibits

    A
    Ionization isomerism
    B
    Linkage isomerism
    C
    Geometrical isomerism
    D
    Optical isomerism
  • Similar Questions

    Explore conceptually related problems

    Arrange the following complexes in order of increasing electrical conductivity: [CO(NH_(3))_(3)Cl_(3)] , [Co(NH_(3))_(5)Cl]Cl_(2) , [Co(NH_(3))_(4)]Cl_(3)

    Arrange the following compounds in the order of decreasing molar conductivity in aqueous solution. i.a. K[Co(NH_(3))_(2)(NO_(2))_(4)] b. [Cr(NH_(3))_(3)(NO_(2))_(3)] c." " [Cr(NH_(3))_(5)(NO_(2))]_(3)[Co(NO_(2))_(6)]_(2) d." "[Mg(Cr(NH_(3)(NO_(2))_(5)] ii. a. Li[Co(NH_(3))_(2)(NO_(2))_(4)]" "b." "Na[Co(NH_(3))_(2)(NO_(2))_(4)] c.K[Co(NH_(3))_(2)(NO_(2))_(4)]" "d." "Cs[Co(NH_(3))_(2)(NO_(2))_(4)] iii. a. Pt(NH_(3))_(6)Cl_(4)"" b." " Cr(NH_(3))_(6)Cl_(3) c." " Co(NH_(3))_(4)Cl_(3)" "d. K_(2)PtCl_(6)

    Arrange the following in increasing order as directed. (a) (i) [CoCl_(3)(NH_(3))_(3)]," "(ii)[CoCl(NH_(3))_(5)]Cl_(2)," "(iii)[Co(NH_(3))_(6)]Cl_(3), " " (iv) [CoCl_(2)(NH_(3))_(4)]Cl - Molar conductance (b) C,N,O,F (halogen)-tendency of sigma donation. ( c) Br^(-),S^(2-),NO_(2)^(-),CO,CN^(-),NH^(3),NO^(3)^(-) -strength of ligands.

    [Co(NH_(3))_(4)Cl_(2)]^(+) exhibits

    Give the correct increasing order of electrical conductivity of aqueous solution of following complex entities : (P)[Pt(NH_(3))_(6)]Cl_(4)" "(Q)[Cr(NH_(3))_(6)]Cl_(3) (R ) [Co(NH_(3))_(4)Cl_(2)]Cl" "(S)[K_(2)[PtCl_(6)]