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For the octahedral complex of Fe^(+) in ...

For the octahedral complex of `Fe^(+)` in `SCN^(-)` (thiocyanato-S) and in `CN^(-)` ligand environments, the difference between the spin - only magnetic moments in Bohr magneton (when approximated to the nerest integer) is `[At. No . of Fe = 26]`

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For the octahedral complexes of Fe^(3+) in SCN^(-) (thiocyanato -S) and in CN^(-) ligand environments, the difference between the spin only magnetic moments in Bohr magnetons (when approximated to the nearest integer) is [atomic number of Fe = 26 ]

For the octahedral complexes of Fe^(3+) in SCN^- (thiocyanato-S) and in CN^- ligand environments, the difference between the spin-only magnetic moments in Bohr magnetons (when approximated to the nearest integer) is [Atomic number of Fe = 26]

For the octahedral complexes of Fe^(3+) in SCN^(-) (thiocyanato -S) and in CN^(-) ligand environments, the difference between the spin only magnetic moments in Bohr magnetons (when approximated to the nearest integer) is [atomic number of Fe = 26 ]

For the octahedral complexes of Fe^(3+) is SCN^(-) ( thiocyanato-S) and in CN^(-) ligand environments , the difference between the spin only magnetic moments in Bohr magnetons (when approximated to the nearest integer ) is [atomic number of Fe = 26]

For the octahedral complexes of Fe^(3+) in SCN^(-) (thiocyanato-S) and in CN^(-) ligand environments, the difference between the spin-only magnetic moments in B.M. (when approximated to the nearest integar)

The spin only magnetic moment of Fe^(3+) ion (inBM) is approximately