ΠΩ 8Ω ΖΩ ΔΩ ww 96/0° V (+ -j492 ΠΩ 6 Ω -Ω 202 Vout Figure P11.4 Circuit for Problem 11.4.
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11.4 Determine Vout in the circuit shown in Fig. P11.4. through any method


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- A certain impedance is given by 1012° N. Does the current lead or lag the voltage, and by how many degrees? Fill in the blanks. The current the voltage byThe manimum value of the altenating wotaye and curent are 400 U and 20A respectvely s a cieritoanected to a svita supply . The ristantanerus values of the veltnge and current are 283V and 10 A respectvely of fime t=0, beth icreasing pesitively. 4) Write dan the gapressom for vwltaga and curend at pmet. b). Defermaned tha prver omsumed in the cranit. Take the velye and cunent to be ginusrida). fie P= VI end\ P = YI (PF)4. A capacitor now is connected in parallel with R1 to reduce the ripple. Find the value of the capacitance needed to make the following ripple index less than 5% through PSpice simulation study. V -×100% -V o,min 0,max rpp RFP = -x100% = V dc dc D1 Dbreak R1 V1 1k VAMPL = 169.71 FREQ = 50 Vo
- Figure P11.20 A 480/-120° V 480/0° V + B 480/120° VQUESTION 5 A resistor, a capacitor, an inductor, and a mystery component are connected in parallel. The resistor has a resistance of 300N, the capacitor has a reactance of 2500, and the inductor has a reactance of 6000. The total impedance of the circuit is 59.52-j119.640. What is the mystery component? O there is no mystery component O resistor O inductor O capacitorThe ratio of the forward voltage to the forward current is called the characteristic impedance? What is forward voltage? What is the forward current? What is characteristic impedance?
- 28. The waveform pattern in Figure 8–61 is required. Devise a ring counter, and indicate how it can be preset to produce this waveform on its Q9 output. At CLK16 the pattern begins to repeat. CLK_L 11 12 13 14 15 16 I7 18 19 |10 ' 11 ' 12 I 13 I 14 I 15 Q9 0 1 0 10jo |o o}o}o}o] 1 0000 1 FIGURE 8-61Can someone explain this problem step by step ? PleasePlease answer all subparts and in typing format please all subparts is compulsory
- The circuit shown in figure EM1-1 shows an AC voltage source VAC connected in series with a load that has • resistance R=280 Ohms, inductance L=1.1mH, and • capacitance C=4.7mF. Calculate values of, and select the apporpriate answer from the list from the list below for • the frequency, fres (in Hz) of the AC source that results in resonance in the load and the impedance, Zres (in Ohms) of the load at this frequency. ● Resonant Frequency, fres= ✓ Hz Impedance of the Load at Resonance, Zres= R 280 Ω ✓ Ohms V. AC L 4.7 mF 1.1 mH Figure EM1-1 Downloadable imageQUESTION 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 RMSFind the open circuit voltage between terminals a & b. 160 m 120° 100/0° V Select one: O Vab 402 -156.25238.75⁰ j8Q2 b. Vab125238.75⁰ O Vab156.252-38.75° Od Vab1252-38.75° a

