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STATEMENT-1: Tetrahedral complexes are a...

STATEMENT-1: Tetrahedral complexes are always high spin complexes .
STATEMENT-2: Crystal field splitting energy in tetrahedral complexes is 2/3 of the `Delta_(0)` (crystal field splitting energy in octahedral complexes).
STATEMENT-3: Tetrahedral complex `[MABCD]^(pm n)` is optically active .

A

TTT

B

TFT

C

FTF

D

TTF

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Crystal Field Splitting in Octahedral Complexes

What is the crystal field stabilization energy for high spin d^6 octahedral complex?

Knowledge Check

  • Crystal field stabilization energy for high spin d^4 octahedral complex is

    A
    `-0.6 triangle_circ`
    B
    `-1.8 triangle_circ`
    C
    -1.6 triangle_circ + p`
    D
    `-1.2 triangle_circ`
  • Crystal field stabilization energy for high spin d^4 octahedral complex is

    A
    (a) `-1.8 Delta_0`
    B
    (b) `-1.6 Delta_0+p`
    C
    (c) `-1.2 Delta_0`
    D
    (d) `-0.6Delta_0`
  • Crystal field stabilization energy for high spin d^4 octahedral complex is :

    A
    `-1.8 Delta_0`
    B
    `-1.6 Delta_0 + P`
    C
    `-1.2 Delta_0`
    D
    `-0.6 Delta_0`
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    The complex that has highest crystal field splitting energy ( triangle ), is:

    Crystal field stabilization energy for high spin d^(4) octahedral complex is

    The crystal field splitting energy for octahedral complex (Delta_(0)) and that for tetrahedral complex (Delta_(t)) are related as:

    The crystl field splitting energy for octahedral complex (Delta_(0)) and that for tetrahedral complex (Delta_(1)) rae related as :

    Crystal field stablisation energy for high spin d^(4) octahedral complex is :-