Conductance of Distortionless Line Formula

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Conductance refers to the loss of electrical energy due to the inherent resistance of the conductors or the dielectric material between the conductors. Check FAQs
G=RCL
G - Conductance?R - Resistance?C - Capacitance?L - Inductance?

Conductance of Distortionless Line Example

With values
With units
Only example

Here is how the Conductance of Distortionless Line equation looks like with Values.

Here is how the Conductance of Distortionless Line equation looks like with Units.

Here is how the Conductance of Distortionless Line equation looks like.

0.0325Edit=12.75Edit13Edit5.1Edit
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Conductance of Distortionless Line Solution

Follow our step by step solution on how to calculate Conductance of Distortionless Line?

FIRST Step Consider the formula
G=RCL
Next Step Substitute values of Variables
G=12.75Ω13μF5.1mH
Next Step Convert Units
G=12.75Ω1.3E-5F0.0051H
Next Step Prepare to Evaluate
G=12.751.3E-50.0051
Next Step Evaluate
G=0.0325S
LAST Step Convert to Output's Unit
G=0.0325

Conductance of Distortionless Line Formula Elements

Variables
Conductance
Conductance refers to the loss of electrical energy due to the inherent resistance of the conductors or the dielectric material between the conductors.
Symbol: G
Measurement: Electric ConductanceUnit:
Note: Value can be positive or negative.
Resistance
Resistance is the component of the total impedance that represents the opposition to the flow of electrical current due to the resistive properties of the transmission line itself.
Symbol: R
Measurement: Electric ResistanceUnit: Ω
Note: Value can be positive or negative.
Capacitance
Capacitance is the ratio of the amount of electric charge stored on a conductor to a difference in electric potential.
Symbol: C
Measurement: CapacitanceUnit: μF
Note: Value can be positive or negative.
Inductance
Inductance refers to the property of an antenna element or a complete antenna structure to store electromagnetic energy in the form of a magnetic field.
Symbol: L
Measurement: InductanceUnit: mH
Note: Value should be greater than 0.

Other formulas in Transmission Line Characteristics category

​Go Resistance at Second Temperature
R2=R1(T+TfT+To)
​Go Relative Pitch of Wound Conductor
Pcond=(Ls2rlayer)
​Go Length of Wound Conductor
Lcond=1+(πPcond)2
​Go Wavelength of Line
λ=2πβ

How to Evaluate Conductance of Distortionless Line?

Conductance of Distortionless Line evaluator uses Conductance = (Resistance*Capacitance)/Inductance to evaluate the Conductance, Conductance of Distortionless Line refers to the measure of the ease with which electric current can flow through the line. It is the reciprocal of the resistance and represents the real part of the admittance of the line. Conductance is denoted by G symbol.

How to evaluate Conductance of Distortionless Line using this online evaluator? To use this online evaluator for Conductance of Distortionless Line, enter Resistance (R), Capacitance (C) & Inductance (L) and hit the calculate button.

FAQs on Conductance of Distortionless Line

What is the formula to find Conductance of Distortionless Line?
The formula of Conductance of Distortionless Line is expressed as Conductance = (Resistance*Capacitance)/Inductance. Here is an example- 0.0325 = (12.75*1.3E-05)/0.0051.
How to calculate Conductance of Distortionless Line?
With Resistance (R), Capacitance (C) & Inductance (L) we can find Conductance of Distortionless Line using the formula - Conductance = (Resistance*Capacitance)/Inductance.
Can the Conductance of Distortionless Line be negative?
Yes, the Conductance of Distortionless Line, measured in Electric Conductance can be negative.
Which unit is used to measure Conductance of Distortionless Line?
Conductance of Distortionless Line is usually measured using the Mho[℧] for Electric Conductance. Siemens[℧], Megasiemens[℧], Millisiemens[℧] are the few other units in which Conductance of Distortionless Line can be measured.
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