(3) The rate constants for the exchange reaction: [Cr(H2O)sX]? + [*Cr(H2O)6]?[*Cr(H2O)sX] + [Cr(H2O)6]? where *Cr is 5!Cr, a radioactive nuclide and X is a mono-anionic ligand, are given in the table. Outline the likely mechanism and explain the difference in the rate constants. F CI Br N3 k (mol1 dm s) 1.2 x 10-3 11 60 >1.2

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Chapter20: Chemistry Of Selected Transition Elements And Coordination Compounds
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(3)
The rate constants for the exchange reaction:
[Cr(H2O)sX]* + [*Cr(H2O)6]? [*Cr(H2O)sX]? + [Cr(H2O)6]?*
where *Cr is 5Cr, a radioactive nuclide and X is a mono-anionic ligand, are given in
the table.
Outline the likely mechanism and explain the difference in the rate constants.
F
CI
Br
N3
k (mol1 dm s)
1.2 x 10-3
11
60
>1.2
Transcribed Image Text:(3) The rate constants for the exchange reaction: [Cr(H2O)sX]* + [*Cr(H2O)6]? [*Cr(H2O)sX]? + [Cr(H2O)6]?* where *Cr is 5Cr, a radioactive nuclide and X is a mono-anionic ligand, are given in the table. Outline the likely mechanism and explain the difference in the rate constants. F CI Br N3 k (mol1 dm s) 1.2 x 10-3 11 60 >1.2
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