► FIGURE 7-65 علمـ SW1 (NCPB) R₁ w 100 Ω R₁₂ 220 Ω W R3 2.2 ΚΩ SW2 (NOPB) 13. Find RT for all combinations of the switches in Figure 7-65.
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- Please answer in typing format solution please only Please answer in typing format I will like it please thanks pleaseFor the circuit in the figurea) Determine the time constant.b) Write the mathematical expression for IL, VL and VR, after the switch is closed.c) Determine IL, VL for one, three and five time constants.d) Draw the waveforms of IL, VL and VR.With V1, voltage peak to peak is 10 volts, R1=200 Ohm, R2=1000 Ohm and C1= 300 nF. Find Vx, voltage across the the capacitor, C1 and R2 when the frequency is 1000 Hz and 10000 Hz
- Find the total capacitance for all 5 circuits. Do not forget units. C21 C1 1µF 1µF C3 C4 C5 1µF 1µF 1µF C6 C7 C2 1µF 1µF 1µF Figure 2 C8 Figure 1 1µF Figure 3 HE HE HE HE HHRC Circuits VII Each circuit below consists of a battery, a capacitor and several resistors. Assume the capacitor is initially uncharged. Determine the voltage and current of each resistor, the voltage and charge of the capacitor and the current thru the battery. All answers are whole numbers. Indicate the direction of each current. (a) The switch has just been closed. 252V ΙΩ L D 122 ww www ΙΩ A D 122 www ἸΩ A 2F (b) The switch has been closed for a long time. 252V www 152 B 2F 292 a B ww 252 www (e) The switch has been closed for a long time. A 252 B. 202 ww fump 192 202 2F 56VYou will calculate the time constant for the circuit shown in the illustration below using Equation 1-1: AC source 4 w 1000 HH Figure 1-3 Calculate the RC time constant C1 1pF 1-6 What is the time constant of this circuit, in milliseconds (ms)?
- (b) For the circuit in Figure 7 (b), calculate Zrand Vab. 20 2 jl0 Q 60/90° V o a bo 40 2 -j5 2 ZT Figure 7(b) llCapacitance increases with O a. Increase in plate area and decrease in distance between the plates b. Decrease in the plate area and value of applied voltage c. Reduction in plate area and distance between the plates O d. Increase in the plate area and distance between the platesIncandescent lighting of 500 W is connected in parallel with an inductive load. A clamp-on ammeter reveals a total circuit current of 7 A. What is the inductance of the load connected in parallel with the incandescent lights? Assume a voltage of 120 V and a frequency of 60 Hz.



