Transmitted Coefficient of Voltage using Transmitted Coefficient of Current-3 (Line PL) Solution

STEP 0: Pre-Calculation Summary
Formula Used
Transmission Coefficient of Voltage = Transmission Coefficient of Current*Impedance of Tertiary Winding/Impedance of Primary Winding
τv = τi*Z3/Z1
This formula uses 4 Variables
Variables Used
Transmission Coefficient of Voltage - Transmission Coefficient of Voltage is defined as the ratio of the transmitted voltage to the incident voltage of the Transmission line during transient.
Transmission Coefficient of Current - The transmission Coefficient Of Current is defined as the ratio of the transmitted current to the incident current of the Transmission line during transient.
Impedance of Tertiary Winding - (Measured in Ohm) - Impedance of Tertiary Winding in electrical devices, refers to the amount of opposition faced by the direct or alternating current when it passes through a conductor component, circuit, or system.
Impedance of Primary Winding - (Measured in Ohm) - The Impedance of Primary Winding is the total of primary Resistance and Reactance.
STEP 1: Convert Input(s) to Base Unit
Transmission Coefficient of Current: 7 --> No Conversion Required
Impedance of Tertiary Winding: 22 Ohm --> 22 Ohm No Conversion Required
Impedance of Primary Winding: 18 Ohm --> 18 Ohm No Conversion Required
STEP 2: Evaluate Formula
Substituting Input Values in Formula
τv = τi*Z3/Z1 --> 7*22/18
Evaluating ... ...
τv = 8.55555555555556
STEP 3: Convert Result to Output's Unit
8.55555555555556 --> No Conversion Required
FINAL ANSWER
8.55555555555556 8.555556 <-- Transmission Coefficient of Voltage
(Calculation completed in 00.004 seconds)

Credits

Created by Urvi Rathod
Vishwakarma Government Engineering College (VGEC), Ahmedabad
Urvi Rathod has created this Calculator and 1500+ more calculators!
Verified by Shobhit Dimri
Bipin Tripathi Kumaon Institute of Technology (BTKIT), Dwarahat
Shobhit Dimri has verified this Calculator and 100+ more calculators!

21 Line With Parallel Loads Calculators

Transmitted Voltage using Incident Voltage (Line PL)
Go Transmitted Voltage = (2*Incident Voltage)/(Impedance of Primary Winding*((1/Impedance of Primary Winding)+(1/Impedance of Secondary Winding)+(1/Impedance of Tertiary Winding)))
Incident Voltage using Transmitted Voltage (Line PL)
Go Incident Voltage = (Transmitted Voltage*Impedance of Primary Winding/2)*((1/Impedance of Primary Winding)+(1/Impedance of Secondary Winding)+(1/Impedance of Tertiary Winding))
Reflected Coefficient of Current (Line PL)
Go Reflection Coefficient of Current = ((-2/Impedance of Primary Winding)/((1/Impedance of Primary Winding)+(1/Impedance of Secondary Winding)+(1/Impedance of Tertiary Winding)))+1
Transmitted Coefficient of Voltage (Line PL)
Go Transmission Coefficient of Voltage = (2/Impedance of Primary Winding)/((1/Impedance of Primary Winding)+(1/Impedance of Secondary Winding)+(1/Impedance of Tertiary Winding))
Transmitted Voltage using Transmitted Coefficient of Current-2 (Line PL)
Go Transmitted Voltage = Transmission Coefficient of Current*Incident Voltage*Impedance of Secondary Winding/(Impedance of Primary Winding)
Incident Voltage using Transmitted Coefficient of Current-3 (Line PL)
Go Incident Voltage = Transmitted Voltage*Impedance of Primary Winding/(Impedance of Tertiary Winding*Transmission Coefficient of Current)
Transmitted Voltage using Transmitted Coefficient of Current-3 (Line PL)
Go Transmitted Voltage = Transmission Coefficient of Current*Incident Voltage*Impedance of Tertiary Winding/Impedance of Primary Winding
Transmitted Coefficient of Voltage using Transmitted Coefficient of Current-2 (Line PL)
Go Transmission Coefficient of Voltage = Transmission Coefficient of Current*Impedance of Secondary Winding/Impedance of Primary Winding
Transmitted Coefficient of Voltage using Transmitted Coefficient of Current-3 (Line PL)
Go Transmission Coefficient of Voltage = Transmission Coefficient of Current*Impedance of Tertiary Winding/Impedance of Primary Winding
Reflected Current using Transmitted Current-3 and 2 (Line PL)
Go Reflected Current = Incident Current-Transmitted Current-Transmitted Current
Incident Current using Transmitted Current-3 and 2 (Line PL)
Go Incident Current = Reflected Current-Transmitted Current-Transmitted Current
Transmitted Coefficient of Voltage using Transmitted Voltage (Line PL)
Go Transmission Coefficient of Voltage = Transmitted Voltage/Incident Voltage
Incident Current using Transmitted Coefficient of Current-2 (Line PL)
Go Incident Current = Transmitted Current/Transmission Coefficient of Current
Incident Current using Transmitted Coefficient of Current-3 (Line PL)
Go Incident Current = Transmitted Current/Transmission Coefficient of Current
Transmitted Voltage using Transmitted Coefficient of Voltage(Line PL)
Go Transmitted Voltage = Transmission Coefficient of Voltage*Incident Voltage
Transmitted Voltage using Transmitted Current-2 (Line PL)
Go Transmitted Voltage = Transmitted Current*Impedance of Secondary Winding
Transmitted Voltage using Transmitted Current-3 (Line PL)
Go Transmitted Voltage = Transmitted Current*Impedance of Tertiary Winding
Reflected Voltage using Impedance-1 (Line PL)
Go Reflected Voltage = Reflected Current*Impedance of Primary Winding*(-1)
Reflected Current using Impedance-1 (Line PL)
Go Reflected Current = (-1)*Reflected Voltage/Impedance of Primary Winding
Incident Current using Impedance-1 (Line PL)
Go Incident Current = Incident Voltage/Impedance of Primary Winding
Incident Voltage using Impedance-1 (Line PL)
Go Incident Voltage = Incident Current*Impedance of Primary Winding

Transmitted Coefficient of Voltage using Transmitted Coefficient of Current-3 (Line PL) Formula

Transmission Coefficient of Voltage = Transmission Coefficient of Current*Impedance of Tertiary Winding/Impedance of Primary Winding
τv = τi*Z3/Z1

What is Transmitted Coefficient Of Current-3?

it is defined as the ratio of the transmitted Current-3 to the incident Current of the Transmission line.

How to Calculate Transmitted Coefficient of Voltage using Transmitted Coefficient of Current-3 (Line PL)?

Transmitted Coefficient of Voltage using Transmitted Coefficient of Current-3 (Line PL) calculator uses Transmission Coefficient of Voltage = Transmission Coefficient of Current*Impedance of Tertiary Winding/Impedance of Primary Winding to calculate the Transmission Coefficient of Voltage, The Transmitted Coefficient of Voltage using Transmitted Coefficient of Current-3 (line PL) formula is defined as the ratio of the transmitted voltage to the incident voltage of the Transmission line. Transmission Coefficient of Voltage is denoted by τv symbol.

How to calculate Transmitted Coefficient of Voltage using Transmitted Coefficient of Current-3 (Line PL) using this online calculator? To use this online calculator for Transmitted Coefficient of Voltage using Transmitted Coefficient of Current-3 (Line PL), enter Transmission Coefficient of Current i), Impedance of Tertiary Winding (Z3) & Impedance of Primary Winding (Z1) and hit the calculate button. Here is how the Transmitted Coefficient of Voltage using Transmitted Coefficient of Current-3 (Line PL) calculation can be explained with given input values -> 8.555556 = 7*22/18.

FAQ

What is Transmitted Coefficient of Voltage using Transmitted Coefficient of Current-3 (Line PL)?
The Transmitted Coefficient of Voltage using Transmitted Coefficient of Current-3 (line PL) formula is defined as the ratio of the transmitted voltage to the incident voltage of the Transmission line and is represented as τv = τi*Z3/Z1 or Transmission Coefficient of Voltage = Transmission Coefficient of Current*Impedance of Tertiary Winding/Impedance of Primary Winding. The transmission Coefficient Of Current is defined as the ratio of the transmitted current to the incident current of the Transmission line during transient, Impedance of Tertiary Winding in electrical devices, refers to the amount of opposition faced by the direct or alternating current when it passes through a conductor component, circuit, or system & The Impedance of Primary Winding is the total of primary Resistance and Reactance.
How to calculate Transmitted Coefficient of Voltage using Transmitted Coefficient of Current-3 (Line PL)?
The Transmitted Coefficient of Voltage using Transmitted Coefficient of Current-3 (line PL) formula is defined as the ratio of the transmitted voltage to the incident voltage of the Transmission line is calculated using Transmission Coefficient of Voltage = Transmission Coefficient of Current*Impedance of Tertiary Winding/Impedance of Primary Winding. To calculate Transmitted Coefficient of Voltage using Transmitted Coefficient of Current-3 (Line PL), you need Transmission Coefficient of Current i), Impedance of Tertiary Winding (Z3) & Impedance of Primary Winding (Z1). With our tool, you need to enter the respective value for Transmission Coefficient of Current, Impedance of Tertiary Winding & Impedance of Primary Winding and hit the calculate button. You can also select the units (if any) for Input(s) and the Output as well.
How many ways are there to calculate Transmission Coefficient of Voltage?
In this formula, Transmission Coefficient of Voltage uses Transmission Coefficient of Current, Impedance of Tertiary Winding & Impedance of Primary Winding. We can use 3 other way(s) to calculate the same, which is/are as follows -
  • Transmission Coefficient of Voltage = (2/Impedance of Primary Winding)/((1/Impedance of Primary Winding)+(1/Impedance of Secondary Winding)+(1/Impedance of Tertiary Winding))
  • Transmission Coefficient of Voltage = Transmission Coefficient of Current*Impedance of Secondary Winding/Impedance of Primary Winding
  • Transmission Coefficient of Voltage = Transmitted Voltage/Incident Voltage
Let Others Know
Facebook
Twitter
Reddit
LinkedIn
Email
WhatsApp
Copied!