Force Exerted on Particle Formula

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Force Exerted on Particle is defined as a pull experienced by an particle which is in motion in a magnetic field of flux density B. It is is directly proportional to its charge. Check FAQs
Fe=(qvcp)B
Fe - Force Exerted on Particle?q - Charge of a Particle?vcp - Velocity of a Charged Particle?B - Magnetic Flux Density?

Force Exerted on Particle Example

With values
With units
Only example

Here is how the Force Exerted on Particle equation looks like with Values.

Here is how the Force Exerted on Particle equation looks like with Units.

Here is how the Force Exerted on Particle equation looks like.

9.7216Edit=(16Edit9.8Edit)62Edit
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Force Exerted on Particle Solution

Follow our step by step solution on how to calculate Force Exerted on Particle?

FIRST Step Consider the formula
Fe=(qvcp)B
Next Step Substitute values of Variables
Fe=(16mC9.8m/s)62T
Next Step Convert Units
Fe=(0.016C9.8m/s)62T
Next Step Prepare to Evaluate
Fe=(0.0169.8)62
LAST Step Evaluate
Fe=9.7216N

Force Exerted on Particle Formula Elements

Variables
Force Exerted on Particle
Force Exerted on Particle is defined as a pull experienced by an particle which is in motion in a magnetic field of flux density B. It is is directly proportional to its charge.
Symbol: Fe
Measurement: ForceUnit: N
Note: Value should be greater than 0.
Charge of a Particle
Charge of a Particle is a particle with an electric charge. It may be an ion, such as a molecule or atom with a surplus or deficit of electrons relative to protons.
Symbol: q
Measurement: Electric ChargeUnit: mC
Note: Value should be greater than 0.
Velocity of a Charged Particle
Velocity of a Charged Particle is defined as the rate of change of the object’s position with respect to a frame of reference and time. A charged particle can move at a constant velocity.
Symbol: vcp
Measurement: SpeedUnit: m/s
Note: Value should be greater than 0.
Magnetic Flux Density
Magnetic Flux Density of a charged particle through a surface is the surface integral of the normal component of the magnetic field B over that surface. It is usually denoted Φ or Φ B .
Symbol: B
Measurement: Magnetic Flux DensityUnit: T
Note: Value should be greater than 0.

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How to Evaluate Force Exerted on Particle?

Force Exerted on Particle evaluator uses Force Exerted on Particle = (Charge of a Particle*Velocity of a Charged Particle)*Magnetic Flux Density to evaluate the Force Exerted on Particle, Force Exerted on Particle is defined as a pull experienced by an particle which is in motion in a magnetic field of flux density B. It is is directly proportional to its charge. Force Exerted on Particle is denoted by Fe symbol.

How to evaluate Force Exerted on Particle using this online evaluator? To use this online evaluator for Force Exerted on Particle, enter Charge of a Particle (q), Velocity of a Charged Particle (vcp) & Magnetic Flux Density (B) and hit the calculate button.

FAQs on Force Exerted on Particle

What is the formula to find Force Exerted on Particle?
The formula of Force Exerted on Particle is expressed as Force Exerted on Particle = (Charge of a Particle*Velocity of a Charged Particle)*Magnetic Flux Density. Here is an example- 9.7216 = (0.016*9.8)*62.
How to calculate Force Exerted on Particle?
With Charge of a Particle (q), Velocity of a Charged Particle (vcp) & Magnetic Flux Density (B) we can find Force Exerted on Particle using the formula - Force Exerted on Particle = (Charge of a Particle*Velocity of a Charged Particle)*Magnetic Flux Density.
Can the Force Exerted on Particle be negative?
No, the Force Exerted on Particle, measured in Force cannot be negative.
Which unit is used to measure Force Exerted on Particle?
Force Exerted on Particle is usually measured using the Newton[N] for Force. Exanewton[N], Meganewton[N], Kilonewton[N] are the few other units in which Force Exerted on Particle can be measured.
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