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Area Of Core When EMF Induced In Secondary Winding Is Given Solution

STEP 0: Pre-Calculation Summary
Formula Used
area = EMF Induced In The Secondary Winding/(4.44*frequency*Number of Turns in Primary winding*Maximum flux density)
A = E2/(4.44*f*N1*B)
This formula uses 4 Variables
Variables Used
EMF Induced In The Secondary Winding - EMF induced in the secondary winding is the production of voltage in a coil because of the change in magnetic flux through a coil. (Measured in Volt)
frequency - Frequency refers to the number of occurrences of a periodic event per time and is measured in cycles/second. (Measured in Cycle per Second)
Number of Turns in Primary winding- The number of Turns in Primary winding is the number of turns primary winding has.
Maximum flux density - Maximum flux density is the measure of the number of magnetic lines of force per unit of cross-sectional area. (Measured in Weber per Meter²)
STEP 1: Convert Input(s) to Base Unit
EMF Induced In The Secondary Winding: 8 Volt --> 8 Volt No Conversion Required
frequency: 90 Cycle per Second --> 90 Hertz (Check conversion here)
Number of Turns in Primary winding: 20 --> No Conversion Required
Maximum flux density: 4 Weber per Meter² --> 4 Tesla (Check conversion here)
STEP 2: Evaluate Formula
Substituting Input Values in Formula
A = E2/(4.44*f*N1*B) --> 8/(4.44*90*20*4)
Evaluating ... ...
A = 0.00025025025025025
STEP 3: Convert Result to Output's Unit
0.00025025025025025 Square Meter --> No Conversion Required
FINAL ANSWER
0.00025025025025025 Square Meter <-- Area
(Calculation completed in 00.016 seconds)

2 Area Of Core Calculators

Area Of Core When EMF Induced In Secondary Winding Is Given
area = EMF Induced In The Secondary Winding/(4.44*frequency*Number of Turns in Primary winding*Maximum flux density) Go
Area Of Core When EMF Induced In Primary Winding Is Given
area = EMF Induced In The Primary Winding/(4.44*frequency*Number of Turns in Primary winding*Maximum flux density) Go

Area Of Core When EMF Induced In Secondary Winding Is Given Formula

area = EMF Induced In The Secondary Winding/(4.44*frequency*Number of Turns in Primary winding*Maximum flux density)
A = E2/(4.44*f*N1*B)

What is induced EMF?

Alternating flux gets linked with the secondary winding, and because of the phenomenon of mutual induction, an emf gets induced in the secondary winding. The magnitude of this induced emf can be found by using the following EMF equation of the transformer.

How to Calculate Area Of Core When EMF Induced In Secondary Winding Is Given?

Area Of Core When EMF Induced In Secondary Winding Is Given calculator uses area = EMF Induced In The Secondary Winding/(4.44*frequency*Number of Turns in Primary winding*Maximum flux density) to calculate the Area, The Area Of Core When EMF Induced In Secondary Winding Is Given formula is defined as the amount of two-dimensional space taken up by an object. The magnitude of this induced emf can be found by using the following EMF equation of the transformer. Area and is denoted by A symbol.

How to calculate Area Of Core When EMF Induced In Secondary Winding Is Given using this online calculator? To use this online calculator for Area Of Core When EMF Induced In Secondary Winding Is Given, enter EMF Induced In The Secondary Winding (E2), frequency (f), Number of Turns in Primary winding (N1) and Maximum flux density (B) and hit the calculate button. Here is how the Area Of Core When EMF Induced In Secondary Winding Is Given calculation can be explained with given input values -> 0.00025 = 8/(4.44*90*20*4).

FAQ

What is Area Of Core When EMF Induced In Secondary Winding Is Given?
The Area Of Core When EMF Induced In Secondary Winding Is Given formula is defined as the amount of two-dimensional space taken up by an object. The magnitude of this induced emf can be found by using the following EMF equation of the transformer and is represented as A = E2/(4.44*f*N1*B) or area = EMF Induced In The Secondary Winding/(4.44*frequency*Number of Turns in Primary winding*Maximum flux density). EMF induced in the secondary winding is the production of voltage in a coil because of the change in magnetic flux through a coil, Frequency refers to the number of occurrences of a periodic event per time and is measured in cycles/second, The number of Turns in Primary winding is the number of turns primary winding has and Maximum flux density is the measure of the number of magnetic lines of force per unit of cross-sectional area.
How to calculate Area Of Core When EMF Induced In Secondary Winding Is Given?
The Area Of Core When EMF Induced In Secondary Winding Is Given formula is defined as the amount of two-dimensional space taken up by an object. The magnitude of this induced emf can be found by using the following EMF equation of the transformer is calculated using area = EMF Induced In The Secondary Winding/(4.44*frequency*Number of Turns in Primary winding*Maximum flux density). To calculate Area Of Core When EMF Induced In Secondary Winding Is Given, you need EMF Induced In The Secondary Winding (E2), frequency (f), Number of Turns in Primary winding (N1) and Maximum flux density (B). With our tool, you need to enter the respective value for EMF Induced In The Secondary Winding, frequency, Number of Turns in Primary winding and Maximum flux density and hit the calculate button. You can also select the units (if any) for Input(s) and the Output as well.
How many ways are there to calculate Area?
In this formula, Area uses EMF Induced In The Secondary Winding, frequency, Number of Turns in Primary winding and Maximum flux density. We can use 2 other way(s) to calculate the same, which is/are as follows -
  • area = EMF Induced In The Secondary Winding/(4.44*frequency*Number of Turns in Primary winding*Maximum flux density)
  • area = EMF Induced In The Primary Winding/(4.44*frequency*Number of Turns in Primary winding*Maximum flux density)
Where is the Area Of Core When EMF Induced In Secondary Winding Is Given calculator used?
Among many, Area Of Core When EMF Induced In Secondary Winding Is Given calculator is widely used in real life applications like {FormulaUses}. Here are few more real life examples -
{FormulaExamplesList}
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