Question: please answer questions below Consider a series RLC circuit used in certain induction application. The series RLC circuit can be described as such: the AC

please answer questions below

please answer questions below Consider a series RLC circuit used in certaininduction application. The series RLC circuit can be described as such: theAC voltage source would be connected to one end of an inductor,

Consider a series RLC circuit used in certain induction application. The series RLC circuit can be described as such: the AC voltage source would be connected to one end of an inductor, while the other end connected to a capacitor. The other end of the capacitor was connected to a resistor, and the other end of the resistor connected back to the AC voltage source. It was found that the peak voltage of the AC voltage was 10 V, at 5 kHz, while the resistance was 1 k(. The inductance and capacitor from the inductor and capacitor were 500 pH and 800 nF respectively. Determine the lowest possible value of the impedance. m L C R out O O a. 1.02 kQ b. 1 kQ c. 39.79 kn d. 100 0Consider a series RLC circuit used in certain induction application. The series RLC circuit can be described as such: the AC voltage source would be connected to one end of an inductor, while the other end connected to a capacitor. The other end of the capacitor was connected to a resistor, and the other end of the resistor connected back to the AC voltage source. It was found that the peak voltage of the AC voltage was 10 V, while the resistance was 1 kQ. The inductance and capacitor from the inductor and capacitor were 500 JH and 800 nF respectively. Determine the angular frequency when the impedance is at its lowest. O L C R out A OAn inductor was connected in series with a resistor, with an input DC voltage of 24 V. Some measurements were performed when the switch just closes. The inductance and resistance were 100 mH and 1 kil respectively. Give examples on reducing the time constant to half of its initial value. mm L = 100 mH I V = 24 V R = 1 kQ out O 3. Decrease inductance, increase resistance O b. Increase inductance, increase resistance C Decrease inductance, decrease resistance Od. Increase inductance, decrease resistance

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