What is the average Power at maximum resistance? Why? What is the effect to the voltage and current when increasing the load resistance?
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- What is the average Power at maximum resistance? Why?
- What is the effect to the voltage and current when increasing the load resistance?
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- For figure (1)draw and calculate the voltages waveform across each half of secondary winding and across load when 100sin2π60t applied across the primary, then find PIV.A circuit consists of an AC voltage source, a 10-ohm resistor, and a capacitor, all connected in series. The magnitude of the impedance of the capacitor is also 10 ohms. Which of the following is true about the source voltage and the current through the circuit? a. Insufficient information is given. b. The source voltage will lag the current. c. The source voltage will lead the current. d. The source voltage will be in-phase with the current.In the circuit in Figure 2, the capacitor andThe circuit of resistance is defined as a load circuit.a) Find the average power dissipated by the load circuit?b) How much of the average power calculated in a) by the resistance in the load circuit and how muchspent by the capacitor? Interpreting the results obtained?c) In the circuit in Figure 2, with a resistance of 80 ohms 23?A coil of is connected in series. In this case,calculating transformer ratio () to optimize power delivery to the load? Obtainedinterpreting the result?d) Calculate the distributed load complex power and reactive power in the newly learned circuit?
- Get the RMS and average value of the voltage. Frequency is 60 Hz. Please write properly the solution. Make sure to recheck.Please show you detailed solution Number 10 A voltage of 250 volts at 50 Hz is impressed on a circuit having a 60-ohm resistor, 35-?F capacitor, and a 0.25-henry inductor in series. Determine power factor. A. 0.979 C. 0.924 B. 0.862 D. 0.707What is the rms value of V0 voltage?
- What are the characteristics of an excellent DC power source? Give 3 and explain.Which of the following statement is true? a. Angle between load voltage and load current in a pure capacitive load is 45 degree. b. Angle between load voltage and load current in a pure capacitive load is is 180 degree. c. Angle between load voltage and load current in a pure capacitive load is is zero. d. Angle between load voltage and load current in a pure capacitive load is is 90 degree.Q2) Consider the circuit in Figure (3), and answer 3 branch only. a) What type of circuit is this? b) What is the total peak secondary voltage? c) Find the peak voltage across each half of the secondary. d) Sketch the voltage waveform across RL. 4:1 120 V rms RL 1.0 k2 D2 eelee