If the roots of the characteristic equation of an RLC circuit are -2 and -3, the response is: Select one:
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A: Given Irms = 9. 00 A Vrms = 180 V Phase difference = 370
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A: The reactance of the inductor (XL) and the capacitor (XC) can be calculated using the following…
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A: The answer is- OPTION C The angle between the peak voltages VL and Vc for an RLC series circuit is…
Q: "In the RLC circuit of the following figure: R = 100 Q, C = 0.1 µF, and L = 0.5 Henry. QUESTION 19…
A:
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A: The power is given by, P=VrmsIrms Thus, Irms=PVrms
Q: What is the impedance ZC of a 40microF capacitor at a frequency of 20kHz in an LRC circuit? How does…
A: C = 40 micro F f = 20 kHz
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Q: that the circuit in the figure has L equal to 0.500 H, R equal to 250 ohms, and C equal to 5.50 μF.…
A: Given:- L = 0.500 H, R =250 ohms, and C = 5.50 μF. At a frequency f = 60.0 Hz Find:- what is the…
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A: Given,
Q: Calculate the reactance of a 1.0 µF capacitor at: a) 10 Hz Xc = b) 100 Hz Xc = c) 1, 000 Hz Xc = %3D
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Q: What is the impedance of a series RLC circuit at resonance?(a) XL (b) XC (c) R (d) XL - XC (e) 0
A: Write the equation for resonance of RLC circuit
Q: The series RLC circuit below has an input voltage of Vin(t) = 16 cos(5t) Volts. 2 H Vin .1 F a)…
A: Given that: For a series RLC circuit: R=8 ΩL=2 C=1 FVin(t)=16 cos 5t V
Q: Mathematical physics : find the general solution for the RLC circuit expressed in R, L, C
A: According to KVL, E=VR+VL+VC E=iR+Ldidt+1C∫idt
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