Receiving End Current in End Condenser Method Formula

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Receiving End Current in ECM is defined as the magnitude and phase angle of current received at the load end of a medium transmission line. Check FAQs
Ir(ecm)=Is(ecm)-Ic(ecm)
Ir(ecm) - Receiving End Current in ECM?Is(ecm) - Sending End Current in ECM?Ic(ecm) - Capacitive Current in ECM?

Receiving End Current in End Condenser Method Example

With values
With units
Only example

Here is how the Receiving End Current in End Condenser Method equation looks like with Values.

Here is how the Receiving End Current in End Condenser Method equation looks like with Units.

Here is how the Receiving End Current in End Condenser Method equation looks like.

14.7Edit=16Edit-1.3Edit
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Receiving End Current in End Condenser Method Solution

Follow our step by step solution on how to calculate Receiving End Current in End Condenser Method?

FIRST Step Consider the formula
Ir(ecm)=Is(ecm)-Ic(ecm)
Next Step Substitute values of Variables
Ir(ecm)=16A-1.3A
Next Step Prepare to Evaluate
Ir(ecm)=16-1.3
LAST Step Evaluate
Ir(ecm)=14.7A

Receiving End Current in End Condenser Method Formula Elements

Variables
Receiving End Current in ECM
Receiving End Current in ECM is defined as the magnitude and phase angle of current received at the load end of a medium transmission line.
Symbol: Ir(ecm)
Measurement: Electric CurrentUnit: A
Note: Value can be positive or negative.
Sending End Current in ECM
Sending End Current in ECM is defined as the amount of current injected into a medium transmission line from the source or injectors.
Symbol: Is(ecm)
Measurement: Electric CurrentUnit: A
Note: Value can be positive or negative.
Capacitive Current in ECM
Capacitive Current in ECM is defined as the current of the capacitor in a transmission line.
Symbol: Ic(ecm)
Measurement: Electric CurrentUnit: A
Note: Value should be greater than 0.

Other formulas in End Condenser Method in Medium Line category

​Go Sending End Current in End Condenser Method
Is(ecm)=Ir(ecm)+Ic(ecm)
​Go Capacitive Current in End Condenser Method
Ic(ecm)=Is(ecm)-Ir(ecm)
​Go Sending End Voltage in End Condenser Method
Vs(ecm)=Vr(ecm)+(Is(ecm)Zecm)
​Go Receiving End Voltage in End Condenser Method
Vr(ecm)=Vs(ecm)-(Is(ecm)Zecm)

How to Evaluate Receiving End Current in End Condenser Method?

Receiving End Current in End Condenser Method evaluator uses Receiving End Current in ECM = Sending End Current in ECM-Capacitive Current in ECM to evaluate the Receiving End Current in ECM, The Receiving End Current in End Condenser Method formula is defined as the voltage at the sending end of the medium transmission lines. Receiving End Current in ECM is denoted by Ir(ecm) symbol.

How to evaluate Receiving End Current in End Condenser Method using this online evaluator? To use this online evaluator for Receiving End Current in End Condenser Method, enter Sending End Current in ECM (Is(ecm)) & Capacitive Current in ECM (Ic(ecm)) and hit the calculate button.

FAQs on Receiving End Current in End Condenser Method

What is the formula to find Receiving End Current in End Condenser Method?
The formula of Receiving End Current in End Condenser Method is expressed as Receiving End Current in ECM = Sending End Current in ECM-Capacitive Current in ECM. Here is an example- 14.2 = 16-1.3.
How to calculate Receiving End Current in End Condenser Method?
With Sending End Current in ECM (Is(ecm)) & Capacitive Current in ECM (Ic(ecm)) we can find Receiving End Current in End Condenser Method using the formula - Receiving End Current in ECM = Sending End Current in ECM-Capacitive Current in ECM.
Can the Receiving End Current in End Condenser Method be negative?
Yes, the Receiving End Current in End Condenser Method, measured in Electric Current can be negative.
Which unit is used to measure Receiving End Current in End Condenser Method?
Receiving End Current in End Condenser Method is usually measured using the Ampere[A] for Electric Current. Milliampere[A], Microampere[A], Centiampere[A] are the few other units in which Receiving End Current in End Condenser Method can be measured.
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