(sub) - (sub) equations:
- S = Apparent Power in VA
- V = Voltage in Volts V
- I = Current in Amps A
- R = Resistor in ohms
- P = Real Power in Kilowatts kw
- P = Real Power in Watts
- E = Energy In Kilowatt-hours Kwh
- E = Energy In Electron-volts eV
- T = Time in Seconds sec
- Q = Elementary Charge e
- Q = Energy In Joules J
- Q = Battery Capacity in Milliamp-hours mAh
- Q = Coulombs Charge C
- Cosθ = Power factor in AC circuits
- VL-L = Line to Line Voltage in 3-Phase Circuits
- VL-N = Line to Neutral Voltage in 3-Phase Circuits
Where:
Mathematical Definition:
I = VR
For Example,
Mathematical Definition 2:
I = VR
For Example,
Mathematical Definition 3:
I = VR
For Example,
Mathematical Definition 4:
I = VR
For Example,
Mathematical Definition:
I = VR
For Example,
Mathematical Definition 2:
I = VR
For Example,
Mathematical Definition 3:
I = VR
For Example,
Mathematical Definition 4:
I = VR
For Example,
Mathematical Definition:
I = VR
For Example,
Mathematical Definition 2:
I = VR
For Example,
Mathematical Definition 3:
I = VR
For Example,
Mathematical Definition 4:
I = VR
For Example,
Suggested Reading
- series Capacitor Conversion Calculator
- Series Inductors Conversion Calculator
- High-pass filter conversion calculator
- Resistor Capacitor voltage divider Calculator
- Resistor Inductor voltage divider calculator
- Resistor current divider conversion calculator
- LM337 Resistor voltage conversion calculator
- Resistor wattage conversion calculator
- Capacitor Resistor voltage divider calculator
- op-amp Gain Conversion calculator
- Parallel Inductors Conversion Calculator
- Capacitor current divider conversion calculator
using the sub calculator.
To use the above "sub Conversion Calculator" follow the below steps:
1.
2.
3.
4.
5.
6.
7.
8.
sub conversion application
- S = Apparent Power in VA
- V = Voltage in Volts V
- I = Current in Amps A
- R = Resistor in ohms
- P = Real Power in Kilowatts kw
- P = Real Power in Watts
- E = Energy In Kilowatt-hours Kwh
- E = Energy In Electron-volts eV
- T = Time in Seconds sec
- Q = Elementary Charge e
- Q = Energy In Joules J
- Q = Battery Capacity in Milliamp-hours mAh
- Q = Coulombs Charge C
- Cosθ = Power factor in AC circuits
- VL-L = Line to Line Voltage in 3-Phase Circuits
- VL-N = Line to Neutral Voltage in 3-Phase Circuits
Where:
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