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Using crystal field theory, draw energy ...

Using crystal field theory, draw energy level diagram, write electronic configuration of the central metal atom/ion and determine the magnetic moment value in the following :
(i) `[CoF_(6)]^(3-),[Co(H_(2)O)_(6)]^(2+),[Co(CN)_(6)]^(3-)`

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PRADEEP-CORDINATION COMPOUNDS-Important Questions
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  2. The molar conductivity of the complex CoCl(3).4NH(3).2H(2)O is found t...

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  3. Account for different magnetic behaviour of hexacyanoferrate (III) and...

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  4. Explain on the basis of valence bond theory that [Ni(CN)(4)]^(2-) ion ...

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  5. [NiCl(4)]^(2-) is paramagnetic while [Ni(CO)(4)] is diamagnetic though...

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  6. Explain [Co(NH3)6]^(3+) is an inner orbital complex whereas [Ni(NH3)6]...

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  7. The spin only magnetic moment of [MnBr(4)]^(2-) is 5.9 B.M. Geometry o...

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  8. A solution of [Ni(H(2)O)(6)]^(2+) is green but a solution of [Ni(CN)(4...

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  9. Amongst the following ions, which one has the highest magnetic moment ...

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  10. For the complex [Fe(en)(2)Cl(2)]Cl (en = ethylene diamine ) , identify...

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  11. (a) What happens to the colour of coordination compound [Ti(H(2)O)(6)]...

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  12. Explain the following cases giving appropriate reasons : (i) CuSO(...

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  13. Aqueous copper sulphate solution (blue in colour) gives (i) a green pr...

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  14. (a) Draw a figure to show splitting of degenerate d- orbitals in an oc...

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  15. Why do compounds having similar geometry have different magnetic momen...

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  16. Using crystal field theory, draw energy level diagram, write electroni...

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  17. (a) Calculate the overall complex dissociation equilibrium constant fo...

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  18. Draw the structures of (i) Zeise's salt (ii) Ferrocene

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  19. Name the central atom present in haemoglobin, chlorophyll and vitamin-...

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  20. Discuss briefly giving an example in each case the role of coordinatio...

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