4.00 Α. 6.00 Ω www 25.0 Ω ww 18.00 Ω www 20.0 Ω ww
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Consider the circuit shown in the figure. The current through the 6.00
Ω resistor is 4.00 A, in the direction shown. Determine the value of
(a) the overall voltage in the voltage source and (b) the current and
voltage for each resistor.
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Solved in 2 steps with 5 images
- 5) Find the reactance the inductance and impedance of the circuit. Calculate the current of this circuit and the sketch waveform of current and voltage. V1 10 V 60 Hz R1 m 100kQ 12 Vrms 1000 Hz 0° 6) Find the reactance the inductance and impedance of the circuit. Calculate the currents of this circuit R www 502 L L1 106mH eee 10 mHIs 120VsQUESTION 3 An inductor, a capacitor, and a resistor are connected in parallel with a function generator. The inductor draws 100mA RMS, the capacitor draws 150mA RMS, and the resistor draws 200mA RMS. Find the magnitude of the total current. O 450mA RMS O 544mA RMS O 352mA RMS O 206mA RMS
- Theoretically determine the capacitor that brings the power factor to 0.93 in lag. For which you must determine the initial and final power triangles, calculate the reactive power of the capacitor, and carry out the corresponding calculations and calculate the value of the required capacitor.For each frequency , calculate the individual inductive reactance, total inductive reactance, and total currentPlease disregard the question on the picture. Here's the right question, at what frequency will the value of the impedance be twice that at 25Hz (refer to the given in question #20).
- When a resistor is connected across the terminals of an ac generator (117 V) that has a fixed frequency, there is a current of 0.332 A in the resistor. When an inductor is connected across the terminals of the same generator, there is a current of 0.365 A in the inductor. When both the resistor and the inductor are connected in series between the terminals of this generator, what is (a) the impedance of the series combination and (b) the phase angle between the current and the voltage of the generator? Note: The ac current and voltage are rms values and power is an average value unless indicated otherwise. (a) Number (b) Number Buda i Vrms R Irms.R Circuit 1 Units Units Vrms. Irms, L Circuit 2 > L Vrms R www Circuit 3What is the frequency of the input signal if the measured capacitive reactance is equal to 28 Q. Given that R1 = 1738 Q and C1 = 1 micro Farad. The voltage is kept constant at 5V. Note: Express your answer in Hz and in 2 decimal places. No need to include the unit. V R1 www C1 Xc Vout -OA 1 kV, 50 Hz underground cable has a capacitance of 0.38 µF/km per/phase. How much reactive power will be generated in 1.5 km of the cable? 2.750 5.0