Voltage Magnitude of AC Potentiometer Solution

STEP 0: Pre-Calculation Summary
Formula Used
Total Voltage AC = sqrt((Voltage 1^2)+(Voltage 2^2))
Va = sqrt((V1^2)+(V2^2))
This formula uses 1 Functions, 3 Variables
Functions Used
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., sqrt(Number)
Variables Used
Total Voltage AC - (Measured in Volt) - Total Voltage AC is the amount of total potential difference across the network. In this case, it is usually the voltage difference across the voltmeter.
Voltage 1 - (Measured in Volt) - Voltage 1 is the reference voltage.
Voltage 2 - (Measured in Volt) - Voltage 2 is the unknown EMF supplied.
STEP 1: Convert Input(s) to Base Unit
Voltage 1: 17 Volt --> 17 Volt No Conversion Required
Voltage 2: 5 Volt --> 5 Volt No Conversion Required
STEP 2: Evaluate Formula
Substituting Input Values in Formula
Va = sqrt((V1^2)+(V2^2)) --> sqrt((17^2)+(5^2))
Evaluating ... ...
Va = 17.7200451466693
STEP 3: Convert Result to Output's Unit
17.7200451466693 Volt --> No Conversion Required
FINAL ANSWER
17.7200451466693 17.72005 Volt <-- Total Voltage AC
(Calculation completed in 00.004 seconds)

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Vellore Institute of Technology (VIT), Vellore
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9 AC Circuits Calculators

Resistance of Coil in Transfer Type Potentiometer
Go Resistance of Coil = (Output Resistance*Voltage across Coil/Voltage across Shunt)*cos(Phase Angle in Coil-Phase Angle in Shunt)
Effective Resistance in Coordinate Type Potentiometer
Go Output Resistance = Sensitivity*Voltage across Coil/Voltage across Shunt
In-Phase Potentiometer Reading
Go In-Phase Potentiometer Reading = Loss Component of Current in Primary Winding*Resistance
Voltage Magnitude of AC Potentiometer
Go Total Voltage AC = sqrt((Voltage 1^2)+(Voltage 2^2))
Quadrature Potentiometer Reading
Go Quadrature Potentiometer Reading = Magnetizing Component of Current*Resistance
Full-Scale Voltage Reading
Go Full-scale Voltage Reading = Current at Full-Scale Reading*Resistance of Meter
AC Potentiometer Phase Angle
Go Phase Angle = atan(Voltage 2/Voltage 1)
Potentiometer Voltage
Go Output Voltage = Line Voltage/Voltage Division Ratio
Voltage Output of Volt Ratio Box in Coordinate Type Potentiometer
Go Output Voltage = Input Voltage/1.5

Voltage Magnitude of AC Potentiometer Formula

Total Voltage AC = sqrt((Voltage 1^2)+(Voltage 2^2))
Va = sqrt((V1^2)+(V2^2))

How is an AC potentiometer standardised?

An AC potentiometer is a direct reading type instrument. The standardization is done using a DC source and a transfer instrument like a thermocouple or an electrodynamometer.

How to Calculate Voltage Magnitude of AC Potentiometer?

Voltage Magnitude of AC Potentiometer calculator uses Total Voltage AC = sqrt((Voltage 1^2)+(Voltage 2^2)) to calculate the Total Voltage AC, The Voltage Magnitude of AC Potentiometer formula is used to calculate the total effective voltage for an AC potentiometer. Total Voltage AC is denoted by Va symbol.

How to calculate Voltage Magnitude of AC Potentiometer using this online calculator? To use this online calculator for Voltage Magnitude of AC Potentiometer, enter Voltage 1 (V1) & Voltage 2 (V2) and hit the calculate button. Here is how the Voltage Magnitude of AC Potentiometer calculation can be explained with given input values -> 17.72005 = sqrt((17^2)+(5^2)).

FAQ

What is Voltage Magnitude of AC Potentiometer?
The Voltage Magnitude of AC Potentiometer formula is used to calculate the total effective voltage for an AC potentiometer and is represented as Va = sqrt((V1^2)+(V2^2)) or Total Voltage AC = sqrt((Voltage 1^2)+(Voltage 2^2)). Voltage 1 is the reference voltage & Voltage 2 is the unknown EMF supplied.
How to calculate Voltage Magnitude of AC Potentiometer?
The Voltage Magnitude of AC Potentiometer formula is used to calculate the total effective voltage for an AC potentiometer is calculated using Total Voltage AC = sqrt((Voltage 1^2)+(Voltage 2^2)). To calculate Voltage Magnitude of AC Potentiometer, you need Voltage 1 (V1) & Voltage 2 (V2). With our tool, you need to enter the respective value for Voltage 1 & Voltage 2 and hit the calculate button. You can also select the units (if any) for Input(s) and the Output as well.
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