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Tuesday 06 October 2026 21:38:32 GMT
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This image is a 20-point Electrical Formulas chart. Here is a simple English explanation: Ohm’s Law V = I × R Voltage = Current × Resistance. Current Calculation I = V ÷ R Current = Voltage ÷ Resistance. Resistance Calculation R = V ÷ I Resistance = Voltage ÷ Current. Single-Phase Power P = V × I × PF Used to calculate single-phase electrical power. Three-Phase Power P = √3 × V × I × PF Used for three-phase systems. Single-Phase Current I = P ÷ (V × PF) Finds current when power, voltage and power factor are known. Three-Phase Current I = P ÷ (√3 × V × PF) Used to calculate three-phase motor/load current. Apparent Power kVA = kW ÷ PF Used for transformer and generator sizing. Power Factor PF = kW ÷ kVA Shows how effectively electrical power is being used. Electrical Energy Energy = Power × Time Example: 2 kW × 5 hours = 10 kWh (10 units). Efficiency Efficiency = (Output ÷ Input) × 100 Example: 8 kW output from 10 kW input = 80%. Voltage Drop Vd = I × R Calculates the voltage lost across resistance. Voltage Drop Percentage %Vd = (Vd ÷ V) × 100 Shows voltage drop as a percentage. kW to HP HP = kW ÷ 0.746 Example: 7.46 kW ≈ 10 HP. HP to kW kW = HP × 0.746 Example: 20 HP = 14.92 kW. Transformer Ratio Vp ÷ Vs = Np ÷ Ns Relates primary/secondary voltage to primary/secondary turns. Electrical Charge Q = I × t Charge is measured in Coulombs. Frequency f = 1 ÷ T Frequency is measured in Hertz (Hz). Inductive Reactance XL = 2πfL Used for coils/inductors in AC circuits. Capacitive Reactance XC = 1 ÷ (2πfC) Used for capacitors in AC circuits. Important symbols: V = Voltage (Volt) I = Current (Ampere) R = Resistance (Ohm) P = Power (Watt) PF = Power Factor f = Frequency (Hz) L = Inductance (Henry) C = Capacitance (Farad) T = Time period (seconds) √3 ≈ 1.732 This is a very useful formula sheet for AC technician, electrical, inverter, motor and electronics work.#CircuitDesign #basicelectronics #ElectronicsExplained #ElectronicsEducation #foryou
This image is a 20-point Electrical Formulas chart. Here is a simple English explanation: Ohm’s Law V = I × R Voltage = Current × Resistance. Current Calculation I = V ÷ R Current = Voltage ÷ Resistance. Resistance Calculation R = V ÷ I Resistance = Voltage ÷ Current. Single-Phase Power P = V × I × PF Used to calculate single-phase electrical power. Three-Phase Power P = √3 × V × I × PF Used for three-phase systems. Single-Phase Current I = P ÷ (V × PF) Finds current when power, voltage and power factor are known. Three-Phase Current I = P ÷ (√3 × V × PF) Used to calculate three-phase motor/load current. Apparent Power kVA = kW ÷ PF Used for transformer and generator sizing. Power Factor PF = kW ÷ kVA Shows how effectively electrical power is being used. Electrical Energy Energy = Power × Time Example: 2 kW × 5 hours = 10 kWh (10 units). Efficiency Efficiency = (Output ÷ Input) × 100 Example: 8 kW output from 10 kW input = 80%. Voltage Drop Vd = I × R Calculates the voltage lost across resistance. Voltage Drop Percentage %Vd = (Vd ÷ V) × 100 Shows voltage drop as a percentage. kW to HP HP = kW ÷ 0.746 Example: 7.46 kW ≈ 10 HP. HP to kW kW = HP × 0.746 Example: 20 HP = 14.92 kW. Transformer Ratio Vp ÷ Vs = Np ÷ Ns Relates primary/secondary voltage to primary/secondary turns. Electrical Charge Q = I × t Charge is measured in Coulombs. Frequency f = 1 ÷ T Frequency is measured in Hertz (Hz). Inductive Reactance XL = 2πfL Used for coils/inductors in AC circuits. Capacitive Reactance XC = 1 ÷ (2πfC) Used for capacitors in AC circuits. Important symbols: V = Voltage (Volt) I = Current (Ampere) R = Resistance (Ohm) P = Power (Watt) PF = Power Factor f = Frequency (Hz) L = Inductance (Henry) C = Capacitance (Farad) T = Time period (seconds) √3 ≈ 1.732 This is a very useful formula sheet for AC technician, electrical, inverter, motor and electronics work.#CircuitDesign #basicelectronics #ElectronicsExplained #ElectronicsEducation #foryou

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