Crystal Field Splitting Energy for Octahedral Complexes Solution

STEP 0: Pre-Calculation Summary
Formula Used
Crystal Field Splitting Energy Octahedral = (Electrons In Eg Orbitals*0.6)+(-0.4*Electrons In T2g Orbital)
CFSEOh = (Neg*0.6)+(-0.4*Nt2g)
This formula uses 3 Variables
Variables Used
Crystal Field Splitting Energy Octahedral - (Measured in Diopter) - Crystal Field Splitting Energy Octahedral is the energy separation between the T2g and Eg orbital.
Electrons In Eg Orbitals - Electrons In Eg Orbitals is the total no. of electrons in dz2 and d(x2-y2) orbitals.
Electrons In T2g Orbital - Electrons In T2g Orbital is the no. of electrons in dxy , dyz , dxz orbital.
STEP 1: Convert Input(s) to Base Unit
Electrons In Eg Orbitals: 3 --> No Conversion Required
Electrons In T2g Orbital: 6 --> No Conversion Required
STEP 2: Evaluate Formula
Substituting Input Values in Formula
CFSEOh = (Neg*0.6)+(-0.4*Nt2g) --> (3*0.6)+(-0.4*6)
Evaluating ... ...
CFSEOh = -0.600000000000001
STEP 3: Convert Result to Output's Unit
-0.600000000000001 Diopter --> No Conversion Required
FINAL ANSWER
-0.600000000000001 -0.6 Diopter <-- Crystal Field Splitting Energy Octahedral
(Calculation completed in 00.004 seconds)

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National Institute Of Technology Warangal (NITW), Warangal
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​ LaTeX ​ Go CFAE Dissociative Substitution = Crystal Field Splitting Energy Octahedral-CFSE For Square Pyramidal Intermediate
Crystal Field Splitting Energy for Octahedral Complexes
​ LaTeX ​ Go Crystal Field Splitting Energy Octahedral = (Electrons In Eg Orbitals*0.6)+(-0.4*Electrons In T2g Orbital)

Crystal Field Splitting Energy for Octahedral Complexes Formula

​LaTeX ​Go
Crystal Field Splitting Energy Octahedral = (Electrons In Eg Orbitals*0.6)+(-0.4*Electrons In T2g Orbital)
CFSEOh = (Neg*0.6)+(-0.4*Nt2g)

What are the factors on which CFSE depends ?

1.Geometry (which changes the d-orbital splitting patterns)
2.Number of d-electrons.
3.Spin Pairing Energy.
4.Ligand character

How to Calculate Crystal Field Splitting Energy for Octahedral Complexes?

Crystal Field Splitting Energy for Octahedral Complexes calculator uses Crystal Field Splitting Energy Octahedral = (Electrons In Eg Orbitals*0.6)+(-0.4*Electrons In T2g Orbital) to calculate the Crystal Field Splitting Energy Octahedral, The Crystal Field Splitting Energy for Octahedral Complexes is defined as the energy separation between the T2g and Eg orbital. Crystal Field Splitting Energy Octahedral is denoted by CFSEOh symbol.

How to calculate Crystal Field Splitting Energy for Octahedral Complexes using this online calculator? To use this online calculator for Crystal Field Splitting Energy for Octahedral Complexes, enter Electrons In Eg Orbitals (Neg) & Electrons In T2g Orbital (Nt2g) and hit the calculate button. Here is how the Crystal Field Splitting Energy for Octahedral Complexes calculation can be explained with given input values -> -0.6 = (3*0.6)+(-0.4*6).

FAQ

What is Crystal Field Splitting Energy for Octahedral Complexes?
The Crystal Field Splitting Energy for Octahedral Complexes is defined as the energy separation between the T2g and Eg orbital and is represented as CFSEOh = (Neg*0.6)+(-0.4*Nt2g) or Crystal Field Splitting Energy Octahedral = (Electrons In Eg Orbitals*0.6)+(-0.4*Electrons In T2g Orbital). Electrons In Eg Orbitals is the total no. of electrons in dz2 and d(x2-y2) orbitals & Electrons In T2g Orbital is the no. of electrons in dxy , dyz , dxz orbital.
How to calculate Crystal Field Splitting Energy for Octahedral Complexes?
The Crystal Field Splitting Energy for Octahedral Complexes is defined as the energy separation between the T2g and Eg orbital is calculated using Crystal Field Splitting Energy Octahedral = (Electrons In Eg Orbitals*0.6)+(-0.4*Electrons In T2g Orbital). To calculate Crystal Field Splitting Energy for Octahedral Complexes, you need Electrons In Eg Orbitals (Neg) & Electrons In T2g Orbital (Nt2g). With our tool, you need to enter the respective value for Electrons In Eg Orbitals & Electrons In T2g Orbital and hit the calculate button. You can also select the units (if any) for Input(s) and the Output as well.
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