For the circuit, find RT, 1₁, 12, and 13. R₁ 6.67 0 150 V R₂ 292 R₂ m 102 R₂ w 30 1²
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A: The circuit diagram is shown below, f=2kHzVD = 0.7V
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A: Solution !!
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A: I AM ATTACHING DETAILED SOLUTION IMAGE OF THIS QUESTION.
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Q: For the circuit of Figure 9.18, it is known that vc (0) = Vo = 25 V. a. To what value should the…
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A: Given,For a BJT circuit,β=200.fin = 20 MHz.Cin = 100 pF.
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A: We have an FIxed-Biased CIrcuit as shown in figure, Given Data, IDSS = 10 mA = 10 * 10-3 A Vp = - 4…
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Q: Find the number of turns N, required to establish a flux p = 12 × 10¹ Wb in the magnetic circuit…
A: ⇒ϕ=N2I2lμμoA⇒12×10-4D=40×3×μ×4π×10-7×0.00120.2⇒μ=1326.29
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Q: A six pole three phase induction motor runs with a synchronous speed of 1500 rpm. What is its…
A: Given, A three phase induction motor has, Number of poles, P=6. Synchronous speed, Ns=1500 rpm.
Q: A 100 KVA transformer has an iron loss of 3 kW and a full load copper loss of 4 kW. So at what kVA…
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Q: Compute the average value of the sinusoid shown in Figure 8.3, where , denotes the peak (maxi- mum)…
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A: NOTE- As per the rules we can answer only 3 sub-parts, please post the remaining sub-parts as the…
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Q: Q6:- For the system in Fig. 5: a) Find Pr. Qr. Sr. Vr and the power factor Fp. b) Draw the power…
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Q: ~N(0₂exp(x) 5. Consider the following data generating process (DGP): y = a + ßx+u, where x ~…
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A: Given:- From the circuit, v1=200 Vv2=64 Vv3=80 VR1=4 ΩR2=6ΩR3=8 ΩR4=10 Ω We have to find the value…
Q: In the circuit given, the two Si transistors are similar. Given β=50, Vcc=12V, I1=5mA. Find I?
A: The given circuit diagram is shown below. The other given information are VCC=12 Volts. β=50. I1=5…
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- You are an electrician working in an industrial plant. You discover that the problem with a certain machine is a defective capacitor. The capacitor is connected to a 240-volt AC circuit. The information on the capacitor reveals that it has a capacitance value of 10 mF and a voltage rating of 240 VAC. The only 10-mF AC capacitor in the storeroom is marked with a voltage rating of 350 WVDC. Can this capacitor be used to replace the defective capacitor? Explain your answer.In the circuit below, Find the voltage across the inductor at time t = 0.000909 s. The values are V1 = 146V, R = 4.4 ohms, L =0.02 henriesAn inductor of 230 milli Henry, a capacitor of 15 micro farad and a 200 ohm resistor are in series across a 36 V and 60 Hz voltage source. Find the total current a. 150 mA b. 0.164 A c. 0.2 A d. 170 mA
- (b) Find the equivalent inductance of the circuit in Figure Q3(b). 8mH 6mH a 5mH 12mH 8mH ) 4mH 6mH 10mH 8mH Figure Q3(b)A voltage of 6 cos(100rt) V is fed as y-input to a CRO. The waveform seen on the screen of the CRO is shown in the figure. The Y and X axes settings for the CRO are respectivelyC3 Vin \aov AC Cr D3 Vin Voat /calculate Vout and explain the followingcircait. ALl capacitor 0,4MF And Calculate the energy trapped in each capacitor and the total energy trapped in the circuit ell
- A 22-k resistor and a 0.02-F capacitor are connected in series to a 5-V source. How long will it take the capacitor to charge to 3.4 V Select one: a. 0.501 ms b. 0.66 ms c. 0.44 ms d. 0.70 msR = 91 ohm L = 93 H C = 3 mF Can you please find the equation for the voltage across the capacitor This is the complete question if anything is missing than comment that what is missing..A series R–L–C circuit comprises a 5µF capacitor, a 4ohm resistor and a variable inductance L. The supply voltage is 10∠0◦ V at a frequency of 159.1 Hz. The inductance is adjusted until the p.d. across the 4 ohm resistanceis a maximum. Determine for this condition (a) the value of inductance, (b) the p.d. across each component and (c) the Q-factor of the circuit.
- The circuit in Figure has been connected for a long time. If the battery is disconnected, how does it take the capacitor to discharge to 1/20 of its initial voltage? Take R₁ = 2.00 Q, R₂=4.00 Q, R3-7.00 Q, R4 = 2.00 Q and C= 5.00 uF and ε = 14.0 V. (Your result must be in us. Include 2 digit after the decimal point and maximum of 2% of error is accepted in your answer.) E R₂ R₂ BAThe figure below shows a simple RC circuit with a 3.30-μF capacitor, a 4.40-M resistor, a 9.00-V emf, and a switch. What are the following exactly 9.00 s after the switch is closed? (a) the charge on the capacitor 13.7204 UC (b) the current in the resistor 0.0110522 x Your response is off by a multiple of ten. HA (c) the rate at which the capacitor is storing energy μW (d) the rate at which the battery is delivering energy μW1 RC circuits You would like to make a simple timer that will sound a buzzer one minute after a switch in an RC circuit is closed. You design a buzzer so that it will sound when the charge on a capacitor falls below 20% of it's initial value. You are using 200nF capacitor. How large of a resistor do you need? www R