Force between Parallel Plate Capacitors Formula

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Force is the push or pull that occurs between two charged objects, resulting in attraction or repulsion, depending on the nature of the charges. Check FAQs
F=Q22C
F - Force?Q - Charge?C - Parallel Plate Capacitance?

Force between Parallel Plate Capacitors Example

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With units
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Here is how the Force between Parallel Plate Capacitors equation looks like with Values.

Here is how the Force between Parallel Plate Capacitors equation looks like with Units.

Here is how the Force between Parallel Plate Capacitors equation looks like.

2.5Edit=0.3Edit220.018Edit
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Force between Parallel Plate Capacitors Solution

Follow our step by step solution on how to calculate Force between Parallel Plate Capacitors?

FIRST Step Consider the formula
F=Q22C
Next Step Substitute values of Variables
F=0.3C220.018F
Next Step Prepare to Evaluate
F=0.3220.018
LAST Step Evaluate
F=2.5N

Force between Parallel Plate Capacitors Formula Elements

Variables
Force
Force is the push or pull that occurs between two charged objects, resulting in attraction or repulsion, depending on the nature of the charges.
Symbol: F
Measurement: ForceUnit: N
Note: Value should be greater than 0.
Charge
Charge is a fundamental property of matter that causes objects to experience a force when placed in an electrostatic field.
Symbol: Q
Measurement: Electric ChargeUnit: C
Note: Value can be positive or negative.
Parallel Plate Capacitance
Parallel Plate Capacitance is the ability of a system of two parallel plates to store electric charge, commonly used in electronic devices and circuits.
Symbol: C
Measurement: CapacitanceUnit: F
Note: Value should be greater than 0.

Other formulas in Capacitance category

​Go Capacitance
C=εrQV
​Go Capacitance of Parallel Plate Capacitor
C=εr[Permitivity-vacuum]Aplates
​Go Capacitance of Spherical Capacitor
C=εrRsashell[Coulomb](ashell-Rs)
​Go Capacitance of Cylindrical Capacitor
C=εrLCylinder2[Coulomb](r2-r1)

How to Evaluate Force between Parallel Plate Capacitors?

Force between Parallel Plate Capacitors evaluator uses Force = (Charge^2)/(2*Parallel Plate Capacitance) to evaluate the Force, Force between Parallel Plate Capacitors formula is defined as a measure of the electrostatic force per unit area between two parallel plates of a capacitor, which is dependent on the charge, capacitance, and distance between the plates, and is a fundamental concept in understanding the behavior of capacitors in electric circuits. Force is denoted by F symbol.

How to evaluate Force between Parallel Plate Capacitors using this online evaluator? To use this online evaluator for Force between Parallel Plate Capacitors, enter Charge (Q) & Parallel Plate Capacitance (C) and hit the calculate button.

FAQs on Force between Parallel Plate Capacitors

What is the formula to find Force between Parallel Plate Capacitors?
The formula of Force between Parallel Plate Capacitors is expressed as Force = (Charge^2)/(2*Parallel Plate Capacitance). Here is an example- 0.09 = (0.3^2)/(2*0.018).
How to calculate Force between Parallel Plate Capacitors?
With Charge (Q) & Parallel Plate Capacitance (C) we can find Force between Parallel Plate Capacitors using the formula - Force = (Charge^2)/(2*Parallel Plate Capacitance).
Can the Force between Parallel Plate Capacitors be negative?
No, the Force between Parallel Plate Capacitors, measured in Force cannot be negative.
Which unit is used to measure Force between Parallel Plate Capacitors?
Force between Parallel Plate Capacitors is usually measured using the Newton[N] for Force. Exanewton[N], Meganewton[N], Kilonewton[N] are the few other units in which Force between Parallel Plate Capacitors can be measured.
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