Steady State Electron Concentration Formula

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Steady State Carrier Concentration refers to the equilibrium concentration of electrons in the conduction band of the material under steady-state conditions. Check FAQs
nss=n0+δn
nss - Steady State Carrier Concentration?n0 - Electron Concentration in Conduction Band?δn - Excess Carrier Concentration?

Steady State Electron Concentration Example

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With units
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Here is how the Steady State Electron Concentration equation looks like with Values.

Here is how the Steady State Electron Concentration equation looks like with Units.

Here is how the Steady State Electron Concentration equation looks like.

1E+14Edit=1.4E+7Edit+1E+14Edit
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Steady State Electron Concentration Solution

Follow our step by step solution on how to calculate Steady State Electron Concentration?

FIRST Step Consider the formula
nss=n0+δn
Next Step Substitute values of Variables
nss=1.4E+71/m³+1E+141/m³
Next Step Prepare to Evaluate
nss=1.4E+7+1E+14
Next Step Evaluate
nss=1049000140000001/m³
LAST Step Rounding Answer
nss=1E+141/m³

Steady State Electron Concentration Formula Elements

Variables
Steady State Carrier Concentration
Steady State Carrier Concentration refers to the equilibrium concentration of electrons in the conduction band of the material under steady-state conditions.
Symbol: nss
Measurement: Carrier ConcentrationUnit: 1/m³
Note: Value should be greater than 0.
Electron Concentration in Conduction Band
Electron Concentration in Conduction Band refers to the quantity or abundance of free electrons available for conduction in the conduction band of a semiconductor material.
Symbol: n0
Measurement: Carrier ConcentrationUnit: 1/m³
Note: Value should be greater than 0.
Excess Carrier Concentration
Excess Carrier Concentration is extra of electron present in the carrier concentration.
Symbol: δn
Measurement: Carrier ConcentrationUnit: 1/m³
Note: Value should be greater than 0.

Other formulas in Energy Band and Charge Carrier category

​Go Energy Gap
Eg=Ec-Ev
​Go Valence Band Energy
Ev=Ec-Eg
​Go Energy of Electron given Coulomb's Constant
Ee=n2π2[hP]22[Mass-e]L2
​Go Photoelectron Energy
Ephoto=[hP]f

How to Evaluate Steady State Electron Concentration?

Steady State Electron Concentration evaluator uses Steady State Carrier Concentration = Electron Concentration in Conduction Band+Excess Carrier Concentration to evaluate the Steady State Carrier Concentration, Steady State Electron Concentration refers to the equilibrium concentration of electrons in the conduction band of the material under steady-state conditions. It represents the balance between the generation and recombination processes that govern the behaviour of electrons in the device. Steady State Carrier Concentration is denoted by nss symbol.

How to evaluate Steady State Electron Concentration using this online evaluator? To use this online evaluator for Steady State Electron Concentration, enter Electron Concentration in Conduction Band (n0) & Excess Carrier Concentration n) and hit the calculate button.

FAQs on Steady State Electron Concentration

What is the formula to find Steady State Electron Concentration?
The formula of Steady State Electron Concentration is expressed as Steady State Carrier Concentration = Electron Concentration in Conduction Band+Excess Carrier Concentration. Here is an example- 1E+14 = 14000000+104900000000000.
How to calculate Steady State Electron Concentration?
With Electron Concentration in Conduction Band (n0) & Excess Carrier Concentration n) we can find Steady State Electron Concentration using the formula - Steady State Carrier Concentration = Electron Concentration in Conduction Band+Excess Carrier Concentration.
Can the Steady State Electron Concentration be negative?
No, the Steady State Electron Concentration, measured in Carrier Concentration cannot be negative.
Which unit is used to measure Steady State Electron Concentration?
Steady State Electron Concentration 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 Steady State Electron Concentration can be measured.
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