Resistance using Line Losses(Two-Wire One Conductor Earthed) Formula

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Resistance Overhead DC is defined as the property of the wire or line that opposes the flow of current through it. Check FAQs
R=Ploss2(I2)
R - Resistance Overhead DC?Ploss - Line Losses?I - Current Overhead DC?

Resistance using Line Losses(Two-Wire One Conductor Earthed) Example

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Here is how the Resistance using Line Losses(Two-Wire One Conductor Earthed) equation looks like with Values.

Here is how the Resistance using Line Losses(Two-Wire One Conductor Earthed) equation looks like with Units.

Here is how the Resistance using Line Losses(Two-Wire One Conductor Earthed) equation looks like.

0.0385Edit=0.74Edit2(3.1Edit2)
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Resistance using Line Losses(Two-Wire One Conductor Earthed) Solution

Follow our step by step solution on how to calculate Resistance using Line Losses(Two-Wire One Conductor Earthed)?

FIRST Step Consider the formula
R=Ploss2(I2)
Next Step Substitute values of Variables
R=0.74W2(3.1A2)
Next Step Prepare to Evaluate
R=0.742(3.12)
Next Step Evaluate
R=0.0385015608740895Ω
LAST Step Rounding Answer
R=0.0385Ω

Resistance using Line Losses(Two-Wire One Conductor Earthed) Formula Elements

Variables
Resistance Overhead DC
Resistance Overhead DC is defined as the property of the wire or line that opposes the flow of current through it.
Symbol: R
Measurement: Electric ResistanceUnit: Ω
Note: Value can be positive or negative.
Line Losses
Line Losses is defined as the total losses occurring in an Overhead DC line when in use.
Symbol: Ploss
Measurement: PowerUnit: W
Note: Value can be positive or negative.
Current Overhead DC
Current Overhead DC is defined as the current flowing through the overhead ac supply wire.
Symbol: I
Measurement: Electric CurrentUnit: A
Note: Value can be positive or negative.

Other formulas in Resistance and Resistivity category

​Go Resistivity using Resistance(Two-Wire One Conductor Earthed)
ρ=RAL
​Go Resistivity using Line Losses(Two-Wire One Conductor Earthed)
ρ=PlossA2L(I2)
​Go Resistivity using Volume(Two-Wire One Conductor Earthed)
ρ=VPlossVm24(P2)(L2)
​Go Resistivity using K(Two-Wire One Conductor Earthed)
ρ=KPlossVm24(P2)(L2)

How to Evaluate Resistance using Line Losses(Two-Wire One Conductor Earthed)?

Resistance using Line Losses(Two-Wire One Conductor Earthed) evaluator uses Resistance Overhead DC = Line Losses/(2*(Current Overhead DC^2)) to evaluate the Resistance Overhead DC, The Resistance using Line Losses(Two-Wire One Conductor Earthed) formula is defined as a measure of the opposition to current flow in an electrical circuit. Resistance Overhead DC is denoted by R symbol.

How to evaluate Resistance using Line Losses(Two-Wire One Conductor Earthed) using this online evaluator? To use this online evaluator for Resistance using Line Losses(Two-Wire One Conductor Earthed), enter Line Losses (Ploss) & Current Overhead DC (I) and hit the calculate button.

FAQs on Resistance using Line Losses(Two-Wire One Conductor Earthed)

What is the formula to find Resistance using Line Losses(Two-Wire One Conductor Earthed)?
The formula of Resistance using Line Losses(Two-Wire One Conductor Earthed) is expressed as Resistance Overhead DC = Line Losses/(2*(Current Overhead DC^2)). Here is an example- 0.038502 = 0.74/(2*(3.1^2)).
How to calculate Resistance using Line Losses(Two-Wire One Conductor Earthed)?
With Line Losses (Ploss) & Current Overhead DC (I) we can find Resistance using Line Losses(Two-Wire One Conductor Earthed) using the formula - Resistance Overhead DC = Line Losses/(2*(Current Overhead DC^2)).
Can the Resistance using Line Losses(Two-Wire One Conductor Earthed) be negative?
Yes, the Resistance using Line Losses(Two-Wire One Conductor Earthed), measured in Electric Resistance can be negative.
Which unit is used to measure Resistance using Line Losses(Two-Wire One Conductor Earthed)?
Resistance using Line Losses(Two-Wire One Conductor Earthed) is usually measured using the Ohm[Ω] for Electric Resistance. Megohm[Ω], Microhm[Ω], Volt per Ampere[Ω] are the few other units in which Resistance using Line Losses(Two-Wire One Conductor Earthed) can be measured.
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