Jahn Teller Distortion Energy for Z-out Formula

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Jahn Teller Distortion Energy For Zout is the energies of d-orbitals with z factor ( i.e., dz2, dxz, dyz ) are lowered since the bonds along the z-axis are elongated. Check FAQs
JTEZ-out=((12)Ndx2y2)+((-12)Ndz2)+((-13)Ndxzdyz)+((23)Ndxy)
JTEZ-out - Jahn Teller Distortion Energy For Zout?Ndx2y2 - Electrons In dx2y2?Ndz2 - Electrons In dz2?Ndxzdyz - Electrons In dxz and dyz?Ndxy - Electrons In dxy?

Jahn Teller Distortion Energy for Z-out Example

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Here is how the Jahn Teller Distortion Energy for Z-out equation looks like with Values.

Here is how the Jahn Teller Distortion Energy for Z-out equation looks like with Units.

Here is how the Jahn Teller Distortion Energy for Z-out equation looks like.

0.3333Edit=((12)2Edit)+((-12)2Edit)+((-13)3Edit)+((23)2Edit)
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Jahn Teller Distortion Energy for Z-out Solution

Follow our step by step solution on how to calculate Jahn Teller Distortion Energy for Z-out?

FIRST Step Consider the formula
JTEZ-out=((12)Ndx2y2)+((-12)Ndz2)+((-13)Ndxzdyz)+((23)Ndxy)
Next Step Substitute values of Variables
JTEZ-out=((12)2)+((-12)2)+((-13)3)+((23)2)
Next Step Prepare to Evaluate
JTEZ-out=((12)2)+((-12)2)+((-13)3)+((23)2)
Next Step Evaluate
JTEZ-out=0.333333333333333
LAST Step Rounding Answer
JTEZ-out=0.3333

Jahn Teller Distortion Energy for Z-out Formula Elements

Variables
Jahn Teller Distortion Energy For Zout
Jahn Teller Distortion Energy For Zout is the energies of d-orbitals with z factor ( i.e., dz2, dxz, dyz ) are lowered since the bonds along the z-axis are elongated.
Symbol: JTEZ-out
Measurement: NAUnit: Unitless
Note: Value should be between 0 to 100.
Electrons In dx2y2
Electrons In dx2y2 is the no. of electrons in dx2-y2 orbital.
Symbol: Ndx2y2
Measurement: NAUnit: Unitless
Note: Value should be between 0 to 3.
Electrons In dz2
Electrons In dz2 is the no. of electrons in dx2-y2 orbital.
Symbol: Ndz2
Measurement: NAUnit: Unitless
Note: Value should be between 0 to 3.
Electrons In dxz and dyz
Electrons In dxz and dyz is the no. of electrons in dxz and dyz orbitals.
Symbol: Ndxzdyz
Measurement: NAUnit: Unitless
Note: Value should be between 0 to 5.
Electrons In dxy
Electrons In dxy is the no. of electrons in dxy orbital.
Symbol: Ndxy
Measurement: NAUnit: Unitless
Note: Value should be between 0 to 3.

Other formulas in Jahn Teller Distortion category

​Go Jahn Teller Distortion Energy for Z-in
JTEZ-in=((-12)Ndx2y2)+((12)Ndz2)+((13)Ndxzdyz)+((-23)Ndxy)

How to Evaluate Jahn Teller Distortion Energy for Z-out?

Jahn Teller Distortion Energy for Z-out evaluator uses Jahn Teller Distortion Energy For Zout = ((1/2)*Electrons In dx2y2)+((-1/2)*Electrons In dz2)+((-1/3)*Electrons In dxz and dyz)+((2/3)*Electrons In dxy) to evaluate the Jahn Teller Distortion Energy For Zout, Jahn Teller Distortion Energy for Z-out is the energies of d-orbitals with z factor ( i.e., dz2, dxz, dyz ) which are lowered since the bonds along the z-axis are elongated. Jahn Teller Distortion Energy For Zout is denoted by JTEZ-out symbol.

How to evaluate Jahn Teller Distortion Energy for Z-out using this online evaluator? To use this online evaluator for Jahn Teller Distortion Energy for Z-out, enter Electrons In dx2y2 (Ndx2y2), Electrons In dz2 (Ndz2), Electrons In dxz and dyz (Ndxzdyz) & Electrons In dxy (Ndxy) and hit the calculate button.

FAQs on Jahn Teller Distortion Energy for Z-out

What is the formula to find Jahn Teller Distortion Energy for Z-out?
The formula of Jahn Teller Distortion Energy for Z-out is expressed as Jahn Teller Distortion Energy For Zout = ((1/2)*Electrons In dx2y2)+((-1/2)*Electrons In dz2)+((-1/3)*Electrons In dxz and dyz)+((2/3)*Electrons In dxy). Here is an example- 0.733333 = ((1/2)*2)+((-1/2)*2)+((-1/3)*3)+((2/3)*2).
How to calculate Jahn Teller Distortion Energy for Z-out?
With Electrons In dx2y2 (Ndx2y2), Electrons In dz2 (Ndz2), Electrons In dxz and dyz (Ndxzdyz) & Electrons In dxy (Ndxy) we can find Jahn Teller Distortion Energy for Z-out using the formula - Jahn Teller Distortion Energy For Zout = ((1/2)*Electrons In dx2y2)+((-1/2)*Electrons In dz2)+((-1/3)*Electrons In dxz and dyz)+((2/3)*Electrons In dxy).
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