Effective Density State in Valence Band Formula

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Effective Density of State in Valence Band is defined as the band of electron orbitals that electrons can jump out of, moving into the conduction band when excited. Check FAQs
Nv=p01-fE
Nv - Effective Density of State in Valence Band?p0 - Holes Concentration in Valance Band?fE - Fermi Function?

Effective Density State in Valence Band Example

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With units
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Here is how the Effective Density State in Valence Band equation looks like with Values.

Here is how the Effective Density State in Valence Band equation looks like with Units.

Here is how the Effective Density State in Valence Band equation looks like.

2.4E+11Edit=2.3E+11Edit1-0.022Edit
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Effective Density State in Valence Band Solution

Follow our step by step solution on how to calculate Effective Density State in Valence Band?

FIRST Step Consider the formula
Nv=p01-fE
Next Step Substitute values of Variables
Nv=2.3E+111/m³1-0.022
Next Step Prepare to Evaluate
Nv=2.3E+111-0.022
Next Step Evaluate
Nv=235173824130.8791/m³
LAST Step Rounding Answer
Nv=2.4E+111/m³

Effective Density State in Valence Band Formula Elements

Variables
Effective Density of State in Valence Band
Effective Density of State in Valence Band is defined as the band of electron orbitals that electrons can jump out of, moving into the conduction band when excited.
Symbol: Nv
Measurement: Carrier ConcentrationUnit: 1/m³
Note: Value should be greater than 0.
Holes Concentration in Valance Band
Holes Concentration in Valance Band refers to the quantity or abundance of holes present in the valence band of a semiconductor material.
Symbol: p0
Measurement: Carrier ConcentrationUnit: 1/m³
Note: Value should be greater than 0.
Fermi Function
Fermi function is defined as a term used to describe the top of the collection of electron energy levels at absolute zero temperature.
Symbol: fE
Measurement: NAUnit: Unitless
Note: Value should be greater than 0.

Other formulas in Energy Band and Charge Carrier category

​Go Distribution Coefficient
kd=CsolidCL
​Go Photoelectron Energy
Ephoto=[hP]f
​Go Fermi Function
fE=n0Nc
​Go Conduction Band Energy
Ec=Eg+Ev

How to Evaluate Effective Density State in Valence Band?

Effective Density State in Valence Band evaluator uses Effective Density of State in Valence Band = Holes Concentration in Valance Band/(1-Fermi Function) to evaluate the Effective Density of State in Valence Band, The Effective Density State in Valence Band formula is defined as the band of electron orbitals that electrons can jump out of, moving into the conduction band when excited. The valence band is simply the outermost electron orbital of an atom of any specific material that electrons actually occupy. Effective Density of State in Valence Band is denoted by Nv symbol.

How to evaluate Effective Density State in Valence Band using this online evaluator? To use this online evaluator for Effective Density State in Valence Band, enter Holes Concentration in Valance Band (p0) & Fermi Function (fE) and hit the calculate button.

FAQs on Effective Density State in Valence Band

What is the formula to find Effective Density State in Valence Band?
The formula of Effective Density State in Valence Band is expressed as Effective Density of State in Valence Band = Holes Concentration in Valance Band/(1-Fermi Function). Here is an example- 2.4E+11 = 230000000000/(1-0.022).
How to calculate Effective Density State in Valence Band?
With Holes Concentration in Valance Band (p0) & Fermi Function (fE) we can find Effective Density State in Valence Band using the formula - Effective Density of State in Valence Band = Holes Concentration in Valance Band/(1-Fermi Function).
Can the Effective Density State in Valence Band be negative?
No, the Effective Density State in Valence Band, measured in Carrier Concentration cannot be negative.
Which unit is used to measure Effective Density State in Valence Band?
Effective Density State in Valence Band is usually measured using the 1 per Cubic Meter[1/m³] for Carrier Concentration. 1 per Cubic Centimeter[1/m³], per Liter[1/m³] are the few other units in which Effective Density State in Valence Band can be measured.
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