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Root Mean Square Voltage is the square root of the time average of the voltage squared. Check FAQs
Vrms=(2Pcos(Φ))ρL6PlossA
Vrms - Root Mean Square Voltage?P - Power Transmitted?Φ - Phase Difference?ρ - Resistivity?L - Length of Underground AC Wire?Ploss - Line Losses?A - Area of Underground AC Wire?

RMS Voltage using Area of X-Section (3 Phase 4 Wire US) Example

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With units
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Here is how the RMS Voltage using Area of X-Section (3 Phase 4 Wire US) equation looks like with Values.

Here is how the RMS Voltage using Area of X-Section (3 Phase 4 Wire US) equation looks like with Units.

Here is how the RMS Voltage using Area of X-Section (3 Phase 4 Wire US) equation looks like.

3.0904Edit=(2300Editcos(30Edit))1.7E-5Edit24Edit62.67Edit1.28Edit
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RMS Voltage using Area of X-Section (3 Phase 4 Wire US) Solution

Follow our step by step solution on how to calculate RMS Voltage using Area of X-Section (3 Phase 4 Wire US)?

FIRST Step Consider the formula
Vrms=(2Pcos(Φ))ρL6PlossA
Next Step Substitute values of Variables
Vrms=(2300Wcos(30°))1.7E-5Ω*m24m62.67W1.28
Next Step Convert Units
Vrms=(2300Wcos(0.5236rad))1.7E-5Ω*m24m62.67W1.28
Next Step Prepare to Evaluate
Vrms=(2300cos(0.5236))1.7E-52462.671.28
Next Step Evaluate
Vrms=3.09039832347754V
LAST Step Rounding Answer
Vrms=3.0904V

RMS Voltage using Area of X-Section (3 Phase 4 Wire US) Formula Elements

Variables
Functions
Root Mean Square Voltage
Root Mean Square Voltage is the square root of the time average of the voltage squared.
Symbol: Vrms
Measurement: Electric PotentialUnit: V
Note: Value should be greater than 0.
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.
Phase Difference
Phase Difference is defined as the difference between the phasor of apparent and real power (in degrees) or between voltage and current in an ac circuit.
Symbol: Φ
Measurement: AngleUnit: °
Note: Value should be greater than 0.
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.
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.
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.
cos
Cosine of an angle is the ratio of the side adjacent to the angle to the hypotenuse of the triangle.
Syntax: cos(Angle)
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 Root Mean Square Voltage

​Go RMS Voltage using Load Current (3 Phase 4 Wire US)
Vrms=(2P3Icos(Φ))
​Go RMS Voltage using Line Losses (3 Phase 4 Wire US)
Vrms=(2Pcos(Φ))R6Ploss

Other formulas in Power and Power Factor category

​Go Power Transmitted using Volume of Conductor Material (3 Phase 4 Wire US)
P=PlossV(Vmcos(Φ))27ρ(L)2
​Go Power Factor using Volume of Conductor Material (3 Phase 4 Wire US)
PF=(1.75)KV

How to Evaluate RMS Voltage using Area of X-Section (3 Phase 4 Wire US)?

RMS Voltage using Area of X-Section (3 Phase 4 Wire US) evaluator uses Root Mean Square Voltage = (2*Power Transmitted/cos(Phase Difference))*sqrt(Resistivity*Length of Underground AC Wire/(6*Line Losses*Area of Underground AC Wire)) to evaluate the Root Mean Square Voltage, The RMS Voltage using Area of X-Section (3 phase 4 wire US) formula is defined as the square root of the time average of the voltage squared. Root Mean Square Voltage is denoted by Vrms symbol.

How to evaluate RMS Voltage using Area of X-Section (3 Phase 4 Wire US) using this online evaluator? To use this online evaluator for RMS Voltage using Area of X-Section (3 Phase 4 Wire US), enter Power Transmitted (P), Phase Difference (Φ), Resistivity (ρ), Length of Underground AC Wire (L), Line Losses (Ploss) & Area of Underground AC Wire (A) and hit the calculate button.

FAQs on RMS Voltage using Area of X-Section (3 Phase 4 Wire US)

What is the formula to find RMS Voltage using Area of X-Section (3 Phase 4 Wire US)?
The formula of RMS Voltage using Area of X-Section (3 Phase 4 Wire US) is expressed as Root Mean Square Voltage = (2*Power Transmitted/cos(Phase Difference))*sqrt(Resistivity*Length of Underground AC Wire/(6*Line Losses*Area of Underground AC Wire)). Here is an example- 3.090398 = (2*300/cos(0.5235987755982))*sqrt(1.7E-05*24/(6*2.67*1.28)).
How to calculate RMS Voltage using Area of X-Section (3 Phase 4 Wire US)?
With Power Transmitted (P), Phase Difference (Φ), Resistivity (ρ), Length of Underground AC Wire (L), Line Losses (Ploss) & Area of Underground AC Wire (A) we can find RMS Voltage using Area of X-Section (3 Phase 4 Wire US) using the formula - Root Mean Square Voltage = (2*Power Transmitted/cos(Phase Difference))*sqrt(Resistivity*Length of Underground AC Wire/(6*Line Losses*Area of Underground AC Wire)). This formula also uses Cosine (cos), Square Root (sqrt) function(s).
What are the other ways to Calculate Root Mean Square Voltage?
Here are the different ways to Calculate Root Mean Square Voltage-
  • Root Mean Square Voltage=(2*Power Transmitted/3*Current Underground AC*cos(Phase Difference))OpenImg
  • Root Mean Square Voltage=(2*Power Transmitted/cos(Phase Difference))*sqrt(Resistance Underground AC/(6*Line Losses))OpenImg
  • Root Mean Square Voltage=(Power Transmitted*Length of Underground AC Wire/cos(Phase Difference))*sqrt(Resistivity/(Line Losses*Volume Of Conductor))OpenImg
Can the RMS Voltage using Area of X-Section (3 Phase 4 Wire US) be negative?
No, the RMS Voltage using Area of X-Section (3 Phase 4 Wire US), measured in Electric Potential cannot be negative.
Which unit is used to measure RMS Voltage using Area of X-Section (3 Phase 4 Wire US)?
RMS Voltage using Area of X-Section (3 Phase 4 Wire US) is usually measured using the Volt[V] for Electric Potential. Millivolt[V], Microvolt[V], Nanovolt[V] are the few other units in which RMS Voltage using Area of X-Section (3 Phase 4 Wire US) can be measured.
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