Cloud Expansion Coefficient for Coordinate Complexes Solution

STEP 0: Pre-Calculation Summary
Formula Used
Cloud Expansion Coefficient = (Energy2+Energy3-(3*Energy1))/15
B = (v2+v3-(3*v1))/15
This formula uses 4 Variables
Variables Used
Cloud Expansion Coefficient - (Measured in Diopter) - Cloud Expansion Coefficient is the Racah interelectronic repulsion parameter, given the symbol B, that occurs when a transition-metal free ion forms a complex with ligands.
Energy2 - (Measured in Diopter) - Energy2 is the transition energy between T1gF to T2g.
Energy3 - (Measured in Diopter) - Energy3 is the transition energy between T1gF to T1gP.
Energy1 - (Measured in Diopter) - Energy1 is the transition energy between T1gF to A2g.
STEP 1: Convert Input(s) to Base Unit
Energy2: 5000 Diopter --> 5000 Diopter No Conversion Required
Energy3: 2000 Diopter --> 2000 Diopter No Conversion Required
Energy1: 1000 Diopter --> 1000 Diopter No Conversion Required
STEP 2: Evaluate Formula
Substituting Input Values in Formula
B = (v2+v3-(3*v1))/15 --> (5000+2000-(3*1000))/15
Evaluating ... ...
B = 266.666666666667
STEP 3: Convert Result to Output's Unit
266.666666666667 Diopter --> No Conversion Required
FINAL ANSWER
266.666666666667 266.6667 Diopter <-- Cloud Expansion Coefficient
(Calculation completed in 00.004 seconds)

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2 Nephelauxatic Effect Calculators

Cloud Expansion Coefficient for Coordinate Complexes
Go Cloud Expansion Coefficient = (Energy2+Energy3-(3*Energy1))/15
Nephelauxetic Parameter of Coordination Complex
Go Nephelauxetic Parameter = Cloud Expansion Coefficient/Cloud Expansion of Free Ion

Cloud Expansion Coefficient for Coordinate Complexes Formula

Cloud Expansion Coefficient = (Energy2+Energy3-(3*Energy1))/15
B = (v2+v3-(3*v1))/15

What is Racah Parameter?

The amount of repulsion varies from atom to atom, depending upon the number and spin of the electrons and the orbitals they occupy. The total repulsion can be expressed in terms of three parameters A, B and C which are known as the Racah parameters after Giulio Racah, who first described them.

How to Calculate Cloud Expansion Coefficient for Coordinate Complexes?

Cloud Expansion Coefficient for Coordinate Complexes calculator uses Cloud Expansion Coefficient = (Energy2+Energy3-(3*Energy1))/15 to calculate the Cloud Expansion Coefficient, The Cloud Expansion Coefficient for Coordinate Complexes formula is defined as the Racah interelectronic repulsion parameter, that occurs when a transition-metal free ion forms a complex with ligands. Cloud Expansion Coefficient is denoted by B symbol.

How to calculate Cloud Expansion Coefficient for Coordinate Complexes using this online calculator? To use this online calculator for Cloud Expansion Coefficient for Coordinate Complexes, enter Energy2 (v2), Energy3 (v3) & Energy1 (v1) and hit the calculate button. Here is how the Cloud Expansion Coefficient for Coordinate Complexes calculation can be explained with given input values -> 266.6667 = (5000+2000-(3*1000))/15.

FAQ

What is Cloud Expansion Coefficient for Coordinate Complexes?
The Cloud Expansion Coefficient for Coordinate Complexes formula is defined as the Racah interelectronic repulsion parameter, that occurs when a transition-metal free ion forms a complex with ligands and is represented as B = (v2+v3-(3*v1))/15 or Cloud Expansion Coefficient = (Energy2+Energy3-(3*Energy1))/15. Energy2 is the transition energy between T1gF to T2g, Energy3 is the transition energy between T1gF to T1gP & Energy1 is the transition energy between T1gF to A2g.
How to calculate Cloud Expansion Coefficient for Coordinate Complexes?
The Cloud Expansion Coefficient for Coordinate Complexes formula is defined as the Racah interelectronic repulsion parameter, that occurs when a transition-metal free ion forms a complex with ligands is calculated using Cloud Expansion Coefficient = (Energy2+Energy3-(3*Energy1))/15. To calculate Cloud Expansion Coefficient for Coordinate Complexes, you need Energy2 (v2), Energy3 (v3) & Energy1 (v1). With our tool, you need to enter the respective value for Energy2, Energy3 & Energy1 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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