Electrophoretic Mobility of Particle Formula

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Electrophoretic Mobility is defined as the ratio of electrophoretic (drift) velocity to the electric field strength at the location where the velocity is measured. Check FAQs
μe=νdE
μe - Electrophoretic Mobility?νd - Drift Velocity of Dispersed Particle?E - Electric Field Intensity?

Electrophoretic Mobility of Particle Example

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With units
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Here is how the Electrophoretic Mobility of Particle equation looks like with Values.

Here is how the Electrophoretic Mobility of Particle equation looks like with Units.

Here is how the Electrophoretic Mobility of Particle equation looks like.

0.1389Edit=5Edit36Edit
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Electrophoretic Mobility of Particle Solution

Follow our step by step solution on how to calculate Electrophoretic Mobility of Particle?

FIRST Step Consider the formula
μe=νdE
Next Step Substitute values of Variables
μe=5m/s36V/m
Next Step Prepare to Evaluate
μe=536
Next Step Evaluate
μe=0.138888888888889m²/V*s
LAST Step Rounding Answer
μe=0.1389m²/V*s

Electrophoretic Mobility of Particle Formula Elements

Variables
Electrophoretic Mobility
Electrophoretic Mobility is defined as the ratio of electrophoretic (drift) velocity to the electric field strength at the location where the velocity is measured.
Symbol: μe
Measurement: MobilityUnit: m²/V*s
Note: Value can be positive or negative.
Drift Velocity of Dispersed Particle
Drift Velocity of Dispersed Particle is defined as average velocity attained by charged particles, such as electrons, in a material due to an electric field.
Symbol: νd
Measurement: SpeedUnit: m/s
Note: Value can be positive or negative.
Electric Field Intensity
The Electric Field Intensity is a vector quantity that has both magnitude and direction. It depends on the amount of charge present on the test charge particle.
Symbol: E
Measurement: Electric Field StrengthUnit: V/m
Note: Value should be greater than 0.

Other formulas in Electrophoresis and other Electrokinetics Phenomena category

​Go Critical Packing Parameter
CPP=vaol
​Go Number of Moles of Surfactant given Critical Micelle Concentration
[M]=c-cCMCn
​Go Micellar Aggregation Number
Nmic=(43)π(Rmic3)Vhydrophobic
​Go Micellar Core Radius given Micellar Aggregation Number
Rmic=(Nmic3Vhydrophobic4π)13

How to Evaluate Electrophoretic Mobility of Particle?

Electrophoretic Mobility of Particle evaluator uses Electrophoretic Mobility = Drift Velocity of Dispersed Particle/Electric Field Intensity to evaluate the Electrophoretic Mobility, The Electrophoretic Mobility of Particle formula is defined as the ratio of electrophoretic velocity to the electric field intensity at the location where the velocity is measured. Electrophoretic Mobility is denoted by μe symbol.

How to evaluate Electrophoretic Mobility of Particle using this online evaluator? To use this online evaluator for Electrophoretic Mobility of Particle, enter Drift Velocity of Dispersed Particle d) & Electric Field Intensity (E) and hit the calculate button.

FAQs on Electrophoretic Mobility of Particle

What is the formula to find Electrophoretic Mobility of Particle?
The formula of Electrophoretic Mobility of Particle is expressed as Electrophoretic Mobility = Drift Velocity of Dispersed Particle/Electric Field Intensity. Here is an example- 0.138889 = 5/36.
How to calculate Electrophoretic Mobility of Particle?
With Drift Velocity of Dispersed Particle d) & Electric Field Intensity (E) we can find Electrophoretic Mobility of Particle using the formula - Electrophoretic Mobility = Drift Velocity of Dispersed Particle/Electric Field Intensity.
Can the Electrophoretic Mobility of Particle be negative?
Yes, the Electrophoretic Mobility of Particle, measured in Mobility can be negative.
Which unit is used to measure Electrophoretic Mobility of Particle?
Electrophoretic Mobility of Particle is usually measured using the Square Meter per Volt per Second[m²/V*s] for Mobility. Square Centimeter per Volt Second[m²/V*s] are the few other units in which Electrophoretic Mobility of Particle can be measured.
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