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The power factor of an AC electrical power system is defined as the ratio of the real power absorbed by the load to the apparent power flowing in the circuit. Check FAQs
PF=4(P2)ρLAPloss(Vm2)
PF - Power Factor?P - Power Transmitted?ρ - Resistivity?L - Length of Underground AC Wire?A - Area of Underground AC Wire?Ploss - Line Losses?Vm - Maximum Voltage Underground AC?

Power Factor using Area of X-Section (1-Phase 2-Wire Mid-Point Earthed) Example

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Here is how the Power Factor using Area of X-Section (1-Phase 2-Wire Mid-Point Earthed) equation looks like with Values.

Here is how the Power Factor using Area of X-Section (1-Phase 2-Wire Mid-Point Earthed) equation looks like with Units.

Here is how the Power Factor using Area of X-Section (1-Phase 2-Wire Mid-Point Earthed) equation looks like.

0.0285Edit=4(300Edit2)1.7E-5Edit24Edit1.28Edit2.67Edit(230Edit2)
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Power Factor using Area of X-Section (1-Phase 2-Wire Mid-Point Earthed) Solution

Follow our step by step solution on how to calculate Power Factor using Area of X-Section (1-Phase 2-Wire Mid-Point Earthed)?

FIRST Step Consider the formula
PF=4(P2)ρLAPloss(Vm2)
Next Step Substitute values of Variables
PF=4(300W2)1.7E-5Ω*m24m1.282.67W(230V2)
Next Step Prepare to Evaluate
PF=4(3002)1.7E-5241.282.67(2302)
Next Step Evaluate
PF=0.028503151449111
LAST Step Rounding Answer
PF=0.0285

Power Factor using Area of X-Section (1-Phase 2-Wire Mid-Point Earthed) Formula Elements

Variables
Functions
Power Factor
The power factor of an AC electrical power system is defined as the ratio of the real power absorbed by the load to the apparent power flowing in the circuit.
Symbol: PF
Measurement: NAUnit: Unitless
Note: Value can be positive or negative.
Power Transmitted
Power Transmitted is the amount of power that is transferred from its place of generation to a location where it is applied to perform useful work.
Symbol: P
Measurement: PowerUnit: W
Note: Value can be positive or negative.
Resistivity
Resistivity is the measure of how strongly a material opposes the flow of current through them.
Symbol: ρ
Measurement: Electric ResistivityUnit: Ω*m
Note: Value can be positive or negative.
Length of Underground AC Wire
Length of Underground AC Wire is the total length of the wire from one end to other end.
Symbol: L
Measurement: LengthUnit: m
Note: Value should be greater than 0.
Area of Underground AC Wire
Area of Underground AC Wire is defined as the cross-sectional area of the wire of an AC supply system.
Symbol: A
Measurement: AreaUnit:
Note: Value can be positive or negative.
Line Losses
Line Losses is defined as the total losses occurring in an Underground AC line when in use.
Symbol: Ploss
Measurement: PowerUnit: W
Note: Value can be positive or negative.
Maximum Voltage Underground AC
Maximum Voltage Underground AC is defined as the peak amplitude of the AC voltage supplied to the line or wire.
Symbol: Vm
Measurement: Electric PotentialUnit: V
Note: Value can be positive or negative.
sqrt
A square root function is a function that takes a non-negative number as an input and returns the square root of the given input number.
Syntax: sqrt(Number)

Other Formulas to find Power Factor

​Go Power Factor using Load Current (1-Phase 2-Wire Mid-Point Earthed)
PF=2PIVm
​Go Power Factor using Line Losses (1-Phase 2-Wire Mid-Point Earthed)
PF=4(P2)RPloss(Vm2)

Other formulas in Power and Power Factor category

​Go Power Transmitted using Load Current (1-Phase 2-Wire Mid-Point Earthed)
P=IVmcos(Φ)2
​Go Power Transmitted using Area of X-Section (1-Phase 2-Wire Mid-Point Earthed)
P=APloss(Vmcos(Φ))24ρL

How to Evaluate Power Factor using Area of X-Section (1-Phase 2-Wire Mid-Point Earthed)?

Power Factor using Area of X-Section (1-Phase 2-Wire Mid-Point Earthed) evaluator uses Power Factor = sqrt(4*(Power Transmitted^2)*Resistivity*Length of Underground AC Wire/(Area of Underground AC Wire*Line Losses*(Maximum Voltage Underground AC^2))) to evaluate the Power Factor, The Power Factor using Area of X-Section (1-phase 2-wire Mid-point Earthed) formula is defined as the cosine of the angle between the voltage phasor and current phasor in an AC circuit. Power Factor is denoted by PF symbol.

How to evaluate Power Factor using Area of X-Section (1-Phase 2-Wire Mid-Point Earthed) using this online evaluator? To use this online evaluator for Power Factor using Area of X-Section (1-Phase 2-Wire Mid-Point Earthed), enter Power Transmitted (P), Resistivity (ρ), Length of Underground AC Wire (L), Area of Underground AC Wire (A), Line Losses (Ploss) & Maximum Voltage Underground AC (Vm) and hit the calculate button.

FAQs on Power Factor using Area of X-Section (1-Phase 2-Wire Mid-Point Earthed)

What is the formula to find Power Factor using Area of X-Section (1-Phase 2-Wire Mid-Point Earthed)?
The formula of Power Factor using Area of X-Section (1-Phase 2-Wire Mid-Point Earthed) is expressed as Power Factor = sqrt(4*(Power Transmitted^2)*Resistivity*Length of Underground AC Wire/(Area of Underground AC Wire*Line Losses*(Maximum Voltage Underground AC^2))). Here is an example- 0.028503 = sqrt(4*(300^2)*1.7E-05*24/(1.28*2.67*(230^2))).
How to calculate Power Factor using Area of X-Section (1-Phase 2-Wire Mid-Point Earthed)?
With Power Transmitted (P), Resistivity (ρ), Length of Underground AC Wire (L), Area of Underground AC Wire (A), Line Losses (Ploss) & Maximum Voltage Underground AC (Vm) we can find Power Factor using Area of X-Section (1-Phase 2-Wire Mid-Point Earthed) using the formula - Power Factor = sqrt(4*(Power Transmitted^2)*Resistivity*Length of Underground AC Wire/(Area of Underground AC Wire*Line Losses*(Maximum Voltage Underground AC^2))). This formula also uses Square Root Function function(s).
What are the other ways to Calculate Power Factor?
Here are the different ways to Calculate Power Factor-
  • Power Factor=(sqrt(2)*Power Transmitted)/(Current Underground AC*Maximum Voltage Underground AC)OpenImg
  • Power Factor=sqrt(4*(Power Transmitted^2)*Resistance Underground AC/(Line Losses*(Maximum Voltage Underground AC^2)))OpenImg
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