Which of the following coordination compounds can show geometrical isomerism?
1. [Pt{(NH₂–CH(CH₃)–CH(CH₃)–NH₂)}₂]²⁺Which of the following complex compound exhibits cis-trans isomerism?
1.
2.
3.
4. All of the above
Which of the following will have three stereoisomeric forms?
(i) (ii)
(iii) (iv)
(a) (iii) and (iv ) (b) (i),(iii) and (iv) (c) (iv) only (d) All four
A coordination complex of type (M-metal ion;X,Y monodentate ligands ), can have either a tetrahedral or a square planar geometry . The maximum number of possible isomers in these two cases are respectively:
(1) 1 and 2
(2) 2 and 1
(3) 1 and 3
(4) 3 and 2
The ratio of cis and trans-isomers of the complex is:
(1) 5:3
(2) 2:1
(3) 7:3
(4) 3:1
is a diamagnetic complex of Pd(II). How many total isomers are possible of analogous paramagnetic complex of Ni(II)?
1. Zero
2. 1
3. 2
4. 3
Which of the following coordination complexes are optically active and whose optical activity does not depend on the orientation (arrangement) of ligands around the metal cation?
(i) [CoCl₃(NH₃)₃]
(ii) [Co(en)₃]³⁺
(iii) [Co(C₂O₄)₂(NH₃)₂]⁻
(iv) [CrCl₂(NH₃)₂(en)]⁺
(1) (ii),(iii) and (iv)
(2) (i),(ii) and (iv)
(3) (ii) and (iv)
(4) only (ii)
Choose the correct code regarding, possible number of geometrical isomers exhibited by the following complexes:
(I) (II)
(III) (IV)
(I) (II) (III) (IV)
1. 4 2 3 1
2. 5 2 4 0
3. 3 2 0 1
4. 5 2 3 0
Total number of geometrical isomers possible for complex are :
(1) 5
(2) 4
(3) 3
(4) 6
Select the correct statement about given square planar complex
(1) It has no geometrical isomer
(2) It is optically active because square planar complex have plane of symmetry
(3) It is optically inactive because square planar complex have plane of symmetry
(4) It is optically active because it hass symmetric carbon