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Electrical Circuit
Phase Difference in AC Circuits Formulas
Phase Difference is defined as the difference between the phasor of apparent and real power (in degrees) or between voltage and current in an ac circuit. And is denoted by Φ. Phase Difference is usually measured using the Degree for Angle. Note that the value of Phase Difference is always positive.
AC Circuits formulas that make use of Phase Difference
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Electric Current using Reactive Power
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Electric Current using Real Power
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RMS Current using Reactive Power
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RMS Current using Real Power
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RMS Voltage using Reactive Power
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RMS Voltage using Real Power
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Voltage using Reactive Power
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Voltage using Real Power
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Line to Neutral Voltage using Reactive Power
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Line to Neutral Voltage using Real Power
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Power in Single-Phase AC Circuits
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Power in Single-Phase AC Circuits using Current
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Power in Single-Phase AC Circuits using Voltage
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Complex Power given Power Factor
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Reactive Power
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Power in Three-Phase AC Circuits using Phase Current
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Real Power in AC Circuit
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Reactive Power using Line-to-Neutral Current
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Real Power using Line-to-Neutral Voltage
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Reactive Power using RMS Voltage and Current
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Real Power using RMS Voltage and Current
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Power Factor given Power Factor Angle
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Line to Neutral Current using Reactive Power
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Line to Neutral Current using Real Power
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FAQ
What is the Phase Difference?
Phase Difference is defined as the difference between the phasor of apparent and real power (in degrees) or between voltage and current in an ac circuit. Phase Difference is usually measured using the Degree for Angle. Note that the value of Phase Difference is always positive.
Can the Phase Difference be negative?
No, the Phase Difference, measured in Angle cannot be negative.
What unit is used to measure Phase Difference?
Phase Difference is usually measured using the Degree[°] for Angle. Radian[°], Minute[°], Second[°] are the few other units in which Phase Difference can be measured.
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