Design an RLC circuit with 6 uH inductance and 1 uF capacitance. Calculate the minimum value of resistance (R) for the circuit to be damped? What is the oscillation frequency of the circuit if R=1 ohms?
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Design an RLC circuit with 6 uH inductance and 1 uF capacitance. Calculate the minimum value of resistance (R) for the circuit to be damped? What is the oscillation frequency of the circuit if R=1 ohms?
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- What frequency must be applied to a 33-mH inductor to produce an inductive reactance of 99.526 ?The figure shows a driven RLC circuit that contains two identical capacitors and two switches. The emf amplitude is set at 12.2 V, and the driving frequency is set at 62.0 Hz. With both switches open, the current leads the emf by 30.9°. With switch S, closed and switch Sz still open, the emf leads the current by 15.0°. With both switches closed, the current amplitude is 444 mA. What are (a) R, (b) C, and (c) L? L s, (a) Number i Units (b) Number i Units (c) Number i Units.A series RLC circuit contains a 4-kN resistor, an inductor with an inductive reactance (X,) of 3.5 kn, and a capacitor with a capacitive reactance (Xc) of 2.4 kN. A 120-Vac, 60-Hz power source is connected to the circuit. How much voltage is dropped across the inductor?
- For a series RLC circuit with a sinusoidal input voltage, the amplitude of the current passing through the circuit (I, in mA) is plotted as a function of frequency for two cases: Curve 1 with R1, L1. and Curve 2 with R2. L2 as shown in the next figure. The value of the capacitor used in the circuits is C=0.01 micro Farads. If the value of R2 =1600 Ohm then the input voltage (in volts) is: 7.5 25 110 Frequency H2 O a. 4 O b. 16 sin(9888 t) O c. 8 O d. 8 cos(6.28 f t) O e. 8 sin (6.28 R t)The graph shows the current vs. frequency graph of FOUR (4) RLC series circuits with different combinations of resistance (R) and capacitance (C) values. The value of L and the peak-to-peak voltage across both sets of data are the same. Find the following quantities:In the compuntation of experimental time constant of an RC circuit in the charging phase, explain the reason why we should not directly plot the capacitor voltage as a function of time in solving?
- if this is an rl circuit, how do we find the current in the inductor? or how do we analyze this circuit for transient analysis?Answer the following with illustration and solution. 1.) A circuit consisting of a resistor of 5kohms in series with a capacitor of 10 nanofarad is connected across a 16v sinusoidal supply. Calculate the output voltage at a frequency of 60Hz and again at frequency of 120Hz. This is the example/guide that might help.The tuner knob on an FM radio moves the plates of an adjustable capacitor that is in series with a 0.300-microH inductor and a net resistance of 1000 ohm. The peak current induced in the circuit by a radio wave of a specific carrier frequency becomes large when the natural frequency of the circuit matches the carrier frequency. What is the frequency f of the FM station that is tuned in when the capacitor in the radio is adjusted to 5.50 pF? If the peak operating voltage in the tuning circuit is 7.00 V,what is the peak current i0?
- C.) A part of a radio tuning circuit has an inductance of 0.2microH and a variablecapacitor. If the circuit is to tune at 102.7MHz FM frequency, determine the value ofthe capacitor needed to tune this circuit.For the circuit below assuming an ideal switch, preform transient analysis to predict the voltage across resistor, R2 and plot the results. The inductor will have zero current as initial condition. L1 0.005 2 U1 100mH R1 1k V1 20Vdc R2 100The figure shows a driven RLC circuit that contains two identical capacitors and two switches. The emf amplitude is set at 11.6 V, and the driving frequency is set at 58.0 Hz. With both switches open, the current leads the emf by 31.8°. With switch S1 closed and switch S2 still open, the emf leads the current by 15.4°. With both switches closed, the current amplitude is 438 mA. What are (a) R, (b) C, and (c) L?