The tetrahedral crystal field splitting energy is equal to ................. of the octahedral crystal field splitting energy.

  • A
    $2/9$
  • B
    $4/9$
  • C
    $9/4$
  • D
    $3/5$

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Similar Questions

The value of $CFSE$ in a tetrahedral complex having a $3d^4$ configuration of the metal ion,surrounded by strong field ligands,will be:

Assertion : Potassium ferrocyanide is diamagnetic,whereas potassium ferricyanide is paramagnetic.
Reason : Crystal field splitting in ferrocyanide ion is greater than that of ferricyanide ion.

The conditions and consequence that favour the $t_{2g}^3, e_g^1$ configuration in a metal complex are:

Which of the following is the correct order of crystal field splitting strength for ligands based on the donor atom?

Which of the following complexes has the highest value of crystal field splitting energy $(\Delta_o)$?

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