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प्रश्न
How many geometrical isomers are possible in the following coordination entity?
[Co(NH3)3Cl3]
How many geometrical isomers are possible in the following coordination entity?
[CoCl3(NH3)3]
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उत्तर
Two (fac- and mer-) geometrical isomers are possible.


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संबंधित प्रश्न
Explain cationic complexes and anionic complexes of co-ordination compounds.
When a coordination compound CoCl3.6NH3 is mixed with AgNO3, 3 moles of AgCl are precipitated per mole of the compound. Write the structural formula of the coordination compound.
Draw one of the geometrical isomers of the complex [Pt (en)2Cl2] +2 which is optically inactive
Define the following term:
Anomers
Indicate the types of isomerism exhibited by the following complex and draw the structures for these isomers:
K[Cr(H2O)2(C2O4)2]
Indicate the types of isomerism exhibited by the following complex and draw the structures for these isomers:
[Co(en)3]Cl3
Indicate the types of isomerism exhibited by the following complex and draw the structures for these isomers:
[Co(NH3)5(NO2)](NO3)2
How many geometrical isomers are possible in the following coordination entity?
[Cr(C2O4)3]3−
Draw the structure of optical isomers of [Cr(NH3)2Cl2(en)]+.
Draw all the isomers (geometrical and optical) of [Co(NH3)Cl(en)2]2+.
Why is Butan-1-ol optically inactive but Butan-2-ol is optically active?
Name the type of isomerism that the compound with molecular formula C3H6O2 exhibits. Represent the isomers.
The IUPAC name for [CoCl(NO2)(en)2]Cl is ____________.
Identify the optically active compounds from the following:
(i) \[\ce{[Co(en)3]^{3+}}\]
(ii) \[\ce{[trans - [Co(en)2Cl2]^+}\]
(iii) \[\ce{cis - [Co(en)2Cl2]^+}\]
(iv) \[\ce{[Cr(NH3)5Cl]}\]
Draw the geometrical isomers of [Co(en)2Cl2]2+. Which geometrical isomer of [Co(en)2Cl2]2+ is not optically active and why?
Assertion (A): Trans [CrCl2(ox)2]3− shows optical isomerism.
Reason (R): Optical isomerism is common in octahedral complexes involving didentate ligands.
Indicate the types of isomerism exhibited by the following complex and draw the structure for these isomer: \[\ce{[Pt(NH3)(H2O)Cl2]}\]
