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Using valence bond theory, predict the g...

Using valence bond theory, predict the geometry and magnetic behaviour of `[Cr(NH_3)_6]^(+)` ion.

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[Cr(NH_3)_6]^(3+) ion is:

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DINESH PUBLICATION-CO-ORDINATION COMPOUNDS -Assignment
  1. Using valence bond theory , explain the geometry and magnetic behaviou...

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  2. Write the IUPAC names of : (i) K(3)[Fe(C(2)O(4))] (ii) [Pt(NH3)6]Cl4...

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  3. Using valence bond theory, predict the geometry and magnetic behaviour...

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  4. With the help of valence bond theory explain the bonding and shape of ...

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  5. Describe the structure and magnetic behaviour of [Ni(CN)4]^(2-) ion on...

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  6. Explain with the help of valence bond theory, the geometry and magneti...

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  7. Write IUPAC name of Fe4[Fe(CN)6]

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  8. Account for the fact that [Fe(CN)6]^(3-) is weakly paramagnetic while ...

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  9. Describe for any two of the following complex ions , the type of hybri...

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  10. Write the names and draw the structures of complex compounds lt(i) [Co...

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  11. What is a ligand ? Give example of bidentate ligand.

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  12. Explain how two complexes of nickel, [Ni(CN)4]^(2-) and Ni(CO)4 have d...

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  13. LIMITATIONS OF VALENCE BOND THEORY

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  14. Explain the following types of isomerism in co-ordination compounds. ...

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  15. What is the C.N of cobalt in [Co(NH3)(4)Cl(NO2)]Cl ?

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  16. Write the formula of pentaaquachloridochromium (II) chloride.

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  17. (a) Name the hybridisation of Co in [Co(NH3)6]^(3+) (b) [Fe(CN)6]^(3...

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  18. [Ni(CO)(4)] possess tetrahedral geometry while [Pt(NH(3))(2)Cl(2)] has...

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  19. Using valence bond approach, deduce the shape and magnetic character o...

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  20. Give a suitable example for each, explain the following : (i) Crysta...

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