
In the circuit below the capacitance is not known. If the voltage applied to the circuit...
1. L RC Circuit. An AC circuit has an inductance L -5 mH, a resistance of 8.5 Ohms, and a capacitance of 1 mF. It is driven by a sinusoidal signal at a frequency of f 100 Hz. Calculate (a) the inductive reactance, XL: (b) the capacitive reactance Xc: (c) the magnitude of the impedance Z: (d) the resonant frequeney in Hertz, and (e) the phase of the resulting current.
CAPACITANCE In the circuit shown in Figure 1 below the capacitors are connected with an applied de potential difference across terminals a-b of V.- 200.0V. The capacitors have values C - 3.0 F, C = 3.0 uF, C, -6.0 pF, and C -6.0 F. Figure 1 Calculate the equivalent capacitance of the circuit. 1(a) ANSWER 1(b) Calculate the potential difference between locations c and don the circuit. ANSWER
Answer
a) 5 − 13.41j, 14.31(cos(69◦33′) − i sin(69◦33′))
b) 1.40sin200pit
(c) leads by 69◦33′
1. For the RLC circuit shown in Figure 6.15, which has a power supply of 20 volts and amplitude and freqency of 100 hertz, 5 ohms, resistance of a capacitance of 100 microfarads, and an inductance of 4 a millihenrys, find (a) the complex impedance in Cartesian and polar form (b) the current (c) the angle by which the current lags or leads the applied...
#1. Find the current in and voltage Vc in the circuit below. Also find the energy stored in the Capacitor and the inductor il 3 H m + 10 A 692 6 Ω VC 4F 12. Find Equivalent Capacitance at terminals a-b a 1 MF u 2uF 2 F 2uF 3 uF 3 uF 3 uF 3 uF b
PROBLEM 2 (25 pts) Consider the amplifier circuit below. Determine: a) Miller capacitance relevant to this circuit. ANSWER: b) Upper 3dB frequency (Hertz). ANSWER: c) Midband voltage gain. ANSWER: d) Sketch Bode plots of the voltage gain magnitude and phase (provide clear plots). 9V Circuit: RS1.2KR Ri=2kk ->0 SRO=100kr Cas=10 o F & Ro=1ks - Kp=2mA/uz VTP--2 V - 0.01 V-
in the circuit below, R=50 ohms, L= 50 mH and C=680
microF determine
ping Tool t Tools Help - Mode v Delay - HD SM S In the circuit below, R = 50 Ohms, L = 50 mH and C = 680 uF. Determine: a) The transfer function H(s) b) The resonant frequency in Hertz c) The bandwidth in Hertz d) The upper cutoff frequency in Hertz e) The lower cutoff frequency in Hertz f) Which type of filter is...
J# 10: 29:2018: Monday Show all steps for full credit. 1. What is the resonance frequency of an LC circuit consisting of a capacitor of s microfarads and a 0.06 Henries. inductor? Lc 2. In a RLC series circuit, the rms voltage of the ac power supply is 120 Volts. The frequency is 45 Hertz. It has a resistance of 100 ohms and a capacitance of 60 micro farads and inductance of 65milli henries. Calculate a) the inductive reactance b)...
Calculate the capacitive reactance, the impedance, and the phase angle, phi, for a series RC circuit having a frequency, f of 1.00e+05 Hz, resistance, R of 2.00e+02 ohms, and capacitance, C of 3.30e-01 uF (microfarads).
Calculate the capacitive reactance, the impedance, and the phase angle, phi, for a series RC circuit having a frequency, f of 1.00e+05 Hz, resistance, R of 2.00e+03 ohms, and capacitance, C of 3.30e-03 uF (microfarads)
An ac series circuit consists of a voltage source of frequency f = 60 Hz and voltage amplitude V, a resistor of resistance 163 ohms and a capacitor of capacitance C= 6.2x10-6 F. What must the source voltage amplitude V be for the average electrical power consumed in the resistor to be 529 watts? There is no inductance in the circuit. Answer is 1200 V. Please show work. Thank you in advance! Will Thumbs up! Please help!