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Transmitted Current-3 (Line PL) Calculator

Formula Used:

\[ \text{Transmitted Current-3} = \text{Transmitted Current} - \text{Transmitted Current-2} \]

Ampere
Ampere

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1. What is Transmitted Current-3?

Transmitted Current-3 is defined as the current wave that is traveling through the Load-3 of the Transmission line. It represents the difference between the total transmitted current and the current through Load-2.

2. How Does the Calculator Work?

The calculator uses the formula:

\[ \text{Transmitted Current-3} = \text{Transmitted Current} - \text{Transmitted Current-2} \]

Where:

Explanation: This formula calculates the current distribution in a transmission line system with multiple loads, specifically determining the current through the third load.

3. Importance of Transmission Line Current Calculation

Details: Accurate current calculation in transmission lines is crucial for system stability, load balancing, and preventing overload conditions. Understanding current distribution helps in proper system design and maintenance.

4. Using the Calculator

Tips: Enter the values for Transmitted Current and Transmitted Current-2 in Amperes. The calculator will compute Transmitted Current-3 automatically.

5. Frequently Asked Questions (FAQ)

Q1: What units should I use for input values?
A: All current values should be entered in Amperes (A).

Q2: Can this calculator handle negative current values?
A: Yes, the calculator can handle both positive and negative current values, which may represent direction of current flow.

Q3: What if I get a negative result for Transmitted Current-3?
A: A negative result indicates that the current direction in Load-3 is opposite to the reference direction.

Q4: Is this formula applicable to AC or DC systems?
A: This basic current division formula applies to both AC and DC systems, though for AC systems, phasor representation should be used for complex calculations.

Q5: How accurate is this calculation?
A: The calculation is mathematically precise based on the input values, assuming ideal transmission line conditions.

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