Intrinsic Electron Collision Frequency using Total Collision Rate Formula

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The Intrinsic Electron Collision Rate is the average rate in which two electrons collide for a given system and is used as the average number of collisions per unit of time . Check FAQs
γ0=γ-gςFD
γ0 - Intrinsic Electron Collision Rate?γ - Total Collision Rate?g - Proportionality Factor?ςF - Fermi Speed of Electron?D - Diameter of Spheres?

Intrinsic Electron Collision Frequency using Total Collision Rate Example

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Here is how the Intrinsic Electron Collision Frequency using Total Collision Rate equation looks like with Values.

Here is how the Intrinsic Electron Collision Frequency using Total Collision Rate equation looks like with Units.

Here is how the Intrinsic Electron Collision Frequency using Total Collision Rate equation looks like.

99.505Edit=100Edit-0.99Edit1E-5Edit2E-5Edit
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Intrinsic Electron Collision Frequency using Total Collision Rate Solution

Follow our step by step solution on how to calculate Intrinsic Electron Collision Frequency using Total Collision Rate?

FIRST Step Consider the formula
γ0=γ-gςFD
Next Step Substitute values of Variables
γ0=100-0.991E-5m/s2E-5m
Next Step Prepare to Evaluate
γ0=100-0.991E-52E-5
LAST Step Evaluate
γ0=99.505

Intrinsic Electron Collision Frequency using Total Collision Rate Formula Elements

Variables
Intrinsic Electron Collision Rate
The Intrinsic Electron Collision Rate is the average rate in which two electrons collide for a given system and is used as the average number of collisions per unit of time .
Symbol: γ0
Measurement: NAUnit: Unitless
Note: Value should be greater than 0.
Total Collision Rate
The Total Collision Rate is simply the collision frequency which describes the rate of collisions between two atomic or molecular species in a given volume, per unit time.
Symbol: γ
Measurement: NAUnit: Unitless
Note: Value should be greater than 0.
Proportionality Factor
The Proportionality Factor is the constant value of the ratio of two proportional quantities x and y.
Symbol: g
Measurement: NAUnit: Unitless
Note: Value should be greater than 0.
Fermi Speed of Electron
The Fermi Speed of Electron is the measure of the average speed of electrons in a metal or other conductor.
Symbol: ςF
Measurement: SpeedUnit: m/s
Note: Value should be greater than 0.
Diameter of Spheres
The Diameter of Spheres is the maximum distance between two antipodal points on the surface of the sphere.
Symbol: D
Measurement: LengthUnit: m
Note: Value should be greater than 0.

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How to Evaluate Intrinsic Electron Collision Frequency using Total Collision Rate?

Intrinsic Electron Collision Frequency using Total Collision Rate evaluator uses Intrinsic Electron Collision Rate = Total Collision Rate-(Proportionality Factor*Fermi Speed of Electron)/Diameter of Spheres to evaluate the Intrinsic Electron Collision Rate, The Intrinsic Electron collision Frequency using Total Collision Rate formula is defined as the subtraction of total collision rate and the product of proportionality factor and fermi speed of electron divided by diameter of sphere. Intrinsic Electron Collision Rate is denoted by γ0 symbol.

How to evaluate Intrinsic Electron Collision Frequency using Total Collision Rate using this online evaluator? To use this online evaluator for Intrinsic Electron Collision Frequency using Total Collision Rate, enter Total Collision Rate (γ), Proportionality Factor (g), Fermi Speed of Electron F) & Diameter of Spheres (D) and hit the calculate button.

FAQs on Intrinsic Electron Collision Frequency using Total Collision Rate

What is the formula to find Intrinsic Electron Collision Frequency using Total Collision Rate?
The formula of Intrinsic Electron Collision Frequency using Total Collision Rate is expressed as Intrinsic Electron Collision Rate = Total Collision Rate-(Proportionality Factor*Fermi Speed of Electron)/Diameter of Spheres. Here is an example- 99.505 = 100-(0.99*1E-05)/2E-05.
How to calculate Intrinsic Electron Collision Frequency using Total Collision Rate?
With Total Collision Rate (γ), Proportionality Factor (g), Fermi Speed of Electron F) & Diameter of Spheres (D) we can find Intrinsic Electron Collision Frequency using Total Collision Rate using the formula - Intrinsic Electron Collision Rate = Total Collision Rate-(Proportionality Factor*Fermi Speed of Electron)/Diameter of Spheres.
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