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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. Check FAQs
P=VPlineVm24ρ(l2)
P - Power Transmitted?V - Volume Of Conductor?Pline - Line Losses?Vm - Maximum Voltage?ρ - Resistivity?l - Length of Wire DC?

Power Transmitted using Volume of Conductor Material (2-Wire Mid-Point DC US) Example

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With units
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Here is how the Power Transmitted using Volume of Conductor Material (2-Wire Mid-Point DC US) equation looks like with Values.

Here is how the Power Transmitted using Volume of Conductor Material (2-Wire Mid-Point DC US) equation looks like with Units.

Here is how the Power Transmitted using Volume of Conductor Material (2-Wire Mid-Point DC US) equation looks like.

10419.7299Edit=35Edit0.6Edit60Edit241.7E-5Edit(3.2Edit2)
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Power Transmitted using Volume of Conductor Material (2-Wire Mid-Point DC US) Solution

Follow our step by step solution on how to calculate Power Transmitted using Volume of Conductor Material (2-Wire Mid-Point DC US)?

FIRST Step Consider the formula
P=VPlineVm24ρ(l2)
Next Step Substitute values of Variables
P=350.6W60V241.7E-5Ω*m(3.2m2)
Next Step Prepare to Evaluate
P=350.660241.7E-5(3.22)
Next Step Evaluate
P=10419.7299417415W
LAST Step Rounding Answer
P=10419.7299W

Power Transmitted using Volume of Conductor Material (2-Wire Mid-Point DC US) Formula Elements

Variables
Functions
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 should be greater than 0.
Volume Of Conductor
Volume Of Conductor the 3-dimensional space enclosed by a conductor material.
Symbol: V
Measurement: VolumeUnit:
Note: Value can be positive or negative.
Line Losses
Line Losses is defined as the losses that are produced in the line.
Symbol: Pline
Measurement: PowerUnit: W
Note: Value can be positive or negative.
Maximum Voltage
Maximum Voltage the highest voltage rating for electrical devices.
Symbol: Vm
Measurement: Electric PotentialUnit: V
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 Wire DC
Length of Wire DC is the measurement or extent of something from end to end.
Symbol: l
Measurement: LengthUnit: m
Note: Value should be greater than 0.
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 Transmitted

​Go Power Transmitted using Area of X-Section (2-Wire Mid-Point Earthed DC US)
P=APlineVm22ρl
​Go Power Transmitted using Load Current (2-Wire Mid-Point DC US)
P=C1Vm

Other formulas in Power and Resistivity category

​Go Resistivity using Area of X-Section (2-wire Mid-point earthed DC US)
ρ=APlineVm22(P2)l
​Go Resistivity using Volume of Conductor Material (2-Wire Mid-Point DC US)
ρ=(VPline4(C12)(l2))

How to Evaluate Power Transmitted using Volume of Conductor Material (2-Wire Mid-Point DC US)?

Power Transmitted using Volume of Conductor Material (2-Wire Mid-Point DC US) evaluator uses Power Transmitted = sqrt(Volume Of Conductor*Line Losses*(Maximum Voltage^2)/(4*Resistivity*(Length of Wire DC^2))) to evaluate the Power Transmitted, The Power Transmitted using Volume of Conductor Material (2-wire Mid-point DC US) formula is defined as the bulk movement of electrical energy from a generating site, such as a power station or power plant, to an electrical substation where voltage is transformed and distributed to consumers or other substations. Power Transmitted is denoted by P symbol.

How to evaluate Power Transmitted using Volume of Conductor Material (2-Wire Mid-Point DC US) using this online evaluator? To use this online evaluator for Power Transmitted using Volume of Conductor Material (2-Wire Mid-Point DC US), enter Volume Of Conductor (V), Line Losses (Pline), Maximum Voltage (Vm), Resistivity (ρ) & Length of Wire DC (l) and hit the calculate button.

FAQs on Power Transmitted using Volume of Conductor Material (2-Wire Mid-Point DC US)

What is the formula to find Power Transmitted using Volume of Conductor Material (2-Wire Mid-Point DC US)?
The formula of Power Transmitted using Volume of Conductor Material (2-Wire Mid-Point DC US) is expressed as Power Transmitted = sqrt(Volume Of Conductor*Line Losses*(Maximum Voltage^2)/(4*Resistivity*(Length of Wire DC^2))). Here is an example- 10419.73 = sqrt(35*0.6*(60^2)/(4*1.7E-05*(3.2^2))).
How to calculate Power Transmitted using Volume of Conductor Material (2-Wire Mid-Point DC US)?
With Volume Of Conductor (V), Line Losses (Pline), Maximum Voltage (Vm), Resistivity (ρ) & Length of Wire DC (l) we can find Power Transmitted using Volume of Conductor Material (2-Wire Mid-Point DC US) using the formula - Power Transmitted = sqrt(Volume Of Conductor*Line Losses*(Maximum Voltage^2)/(4*Resistivity*(Length of Wire DC^2))). This formula also uses Square Root (sqrt) function(s).
What are the other ways to Calculate Power Transmitted?
Here are the different ways to Calculate Power Transmitted-
  • Power Transmitted=sqrt(Area of underground dc wire*Line Losses*(Maximum Voltage^2)/(2*Resistivity*Length of Wire DC))OpenImg
  • Power Transmitted=Current underground DC*Maximum VoltageOpenImg
Can the Power Transmitted using Volume of Conductor Material (2-Wire Mid-Point DC US) be negative?
No, the Power Transmitted using Volume of Conductor Material (2-Wire Mid-Point DC US), measured in Power cannot be negative.
Which unit is used to measure Power Transmitted using Volume of Conductor Material (2-Wire Mid-Point DC US)?
Power Transmitted using Volume of Conductor Material (2-Wire Mid-Point DC US) is usually measured using the Watt[W] for Power. Kilowatt[W], Milliwatt[W], Microwatt[W] are the few other units in which Power Transmitted using Volume of Conductor Material (2-Wire Mid-Point DC US) can be measured.
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