Average Current through Galvanometer Formula

Fx Copy
LaTeX Copy
Electric Current is the rate at which electric charge flows through a coil creating magnetic effect. Check FAQs
I=2NΦtR
I - Electric Current?N - Coil Turns?Φ - Magnetic Flux?t - Time?R - Resistance?

Average Current through Galvanometer Example

With values
With units
Only example

Here is how the Average Current through Galvanometer equation looks like with Values.

Here is how the Average Current through Galvanometer equation looks like with Units.

Here is how the Average Current through Galvanometer equation looks like.

4.7273Edit=250Edit2.6Edit110Edit0.5Edit
You are here -
HomeIcon Home » Category Engineering » Category Electronics and Instrumentation » Category Measuring Instrument Circuits » fx Average Current through Galvanometer

Average Current through Galvanometer Solution

Follow our step by step solution on how to calculate Average Current through Galvanometer?

FIRST Step Consider the formula
I=2NΦtR
Next Step Substitute values of Variables
I=2502.6Wb110s0.5Ω
Next Step Prepare to Evaluate
I=2502.61100.5
Next Step Evaluate
I=4.72727272727273A
LAST Step Rounding Answer
I=4.7273A

Average Current through Galvanometer Formula Elements

Variables
Electric Current
Electric Current is the rate at which electric charge flows through a coil creating magnetic effect.
Symbol: I
Measurement: Electric CurrentUnit: A
Note: Value should be greater than 0.
Coil Turns
Coil Turns can be defined as the total number of turns that are wounded on the object.
Symbol: N
Measurement: NAUnit: Unitless
Note: Value should be greater than 0.
Magnetic Flux
Magnetic flux is a measure of the total magnetic field passing through a given area. It is generated when an electric current flows through a coil or conductor.
Symbol: Φ
Measurement: Magnetic FluxUnit: Wb
Note: Value can be positive or negative.
Time
Time is the duration over which the current is measured in the galvanometer.
Symbol: t
Measurement: TimeUnit: s
Note: Value should be greater than 0.
Resistance
Resistance refers to the electrical resistance of the coil inside the galvanometer.
Symbol: R
Measurement: Electric ResistanceUnit: Ω
Note: Value should be greater than 0.

Other formulas in Galvanometer category

​Go EMF across Galvanometer
V=R(I1-I2)
​Go Instantaneous Deflecting Torque
Ti=RK(I12-I22)
​Go Throw of Galvanometer
θ=SgQ
​Go Final Steady Deflection in Galvanometer
θd=TcK

How to Evaluate Average Current through Galvanometer?

Average Current through Galvanometer evaluator uses Electric Current = (2*Coil Turns*Magnetic Flux)/(Time*Resistance) to evaluate the Electric Current, The Average Current through Galvanometer formula is directly dependent on the flux produced in the search coil but is inversely proportional to the time taken to reverse the direction of the said current. Electric Current is denoted by I symbol.

How to evaluate Average Current through Galvanometer using this online evaluator? To use this online evaluator for Average Current through Galvanometer, enter Coil Turns (N), Magnetic Flux (Φ), Time (t) & Resistance (R) and hit the calculate button.

FAQs on Average Current through Galvanometer

What is the formula to find Average Current through Galvanometer?
The formula of Average Current through Galvanometer is expressed as Electric Current = (2*Coil Turns*Magnetic Flux)/(Time*Resistance). Here is an example- 103.7924 = (2*50*2.6)/(110*0.5).
How to calculate Average Current through Galvanometer?
With Coil Turns (N), Magnetic Flux (Φ), Time (t) & Resistance (R) we can find Average Current through Galvanometer using the formula - Electric Current = (2*Coil Turns*Magnetic Flux)/(Time*Resistance).
Can the Average Current through Galvanometer be negative?
No, the Average Current through Galvanometer, measured in Electric Current cannot be negative.
Which unit is used to measure Average Current through Galvanometer?
Average Current through Galvanometer is usually measured using the Ampere[A] for Electric Current. Milliampere[A], Microampere[A], Centiampere[A] are the few other units in which Average Current through Galvanometer can be measured.
Copied!