For a series RC circuit with Vin= 100 V. What is the value of I(s) when R = 10 ohms and c = 0.25 F?
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- An RC series circuit is connected to a 120-V, 60-Hz power source. The resistor is 25 and has a voltage drop of 65 volts. What is the capacitance of the capacitor?İf the effective voltage value is 80 volts and the effective current value is 4A in the series RLC circuit in the figure, what is the capacitance of the capacitor?(a) An AC triangular waveform with peak values of +2V is used as an input to a comparator. The outputs of the comparator are VOH=+5V, VOL=-5V 4 (ii) Draw a waveform of the output of the comparator when an inverting circuit in Figure 6 with an offset of 1V is used. Vi • 40 Vo 1V 4D 60 Figure 6
- Vcc = +12 V %3D a. Determine the following values for the fixed-bias configuration in the figure to the right. Rc IBo and ICO 2.2 k2 C2 RB 240 k2 ac output VCEQ, VB, and Vc 10 uF C ac input VCE B = 50 VBC 10 µFThe value of Ai is . . NOTE: When the output is taken from the collector terminal of the transistor as shown in Figure O 85.613 O 78.613 65.613 81.613 89.613 71.613 The value of Zo is .. . ohm. . * 12.897 8.897 6.897 4.897 9.897 O 3.897 The value of Av is .. NOTE: When the output is taken from the collector terminal of the transistor as shown in Figure -17.597 -14.597 -19.597 -21.597 -8.597 -11.597 O O O O O O O O O OA step down converter is operated with a duty cycle of k 0.75. The input voltage is V, 20V. and the load is L=5mH, R=152 The minimum inductor current is I 0.1A. The maximum inductor current is %3D %3D Select one: O a. 0.9 A O b. 1.9 A O C. None of these O d. 1.1 A O e.2A
- 1.Using the simulator of your choice simulate and screenshot the output voltage wave form for each circuit. +50 V R +5 V Vin Vout R- 47 0 3.3 kN Vin V out -50 V -5 V B AQ6) The waveform of the voltage obtained after rectification is of a -----nature and therefore contains .harmonics a. Sinusoidal O b. Triangular c. Pulsating O d. Repetitive ODetermine Rc, RE, RB, VCE0, & VB 12V Ic = 2 mA Ro RB 7.6 V B = 80 B VCE E 2.4 V RE