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Network Theory: Time and frequency domain analysis
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Network Theory: Time and frequency domain analysis
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20 Questions

1. For an R-L-C circuit, we get [D '
2. A coil of inductance 10 H, resistance 40 Ω is connected as shown in the figure. The switch S connected with point 1 for a very long time, is moved to point 2 at t=0. If, at t=0+, the voltage across the coil is 120 V, the value of the resistance R is __________ A 1 μF capacitor is connected across a 50 V battery. The battery is kept closed for a long time. The circuit current and voltage across capacitor is __________"
3. The voltage and current in a capacitor are related as?
4. The expression of current in R- L circuit is?
5. If the roots of an equation are complex conjugate, then the response will be?
6. If the roots of an equation are complex conjugate, then the response will be?
7. The expression of current in R- C circuit is?
8. The steady state part in the expression of current in the R-L circuit is?
9. The relation between current and voltage in case of inductor is?
10. The resistance element __________ while going from the time domain to frequency domain.
11. In an R-C circuit, when the switch is closed, the response ____________
12. The s-domain equivalent of the capacitor reduces to an capacitor with impedance?
13. The time constant of an R-C circuit is?
14. After how many time constants, the transient part reaches more than 99 percent of its final value?
15. The value of the time constant in the R-L circuit is?
16. In the expression of current in the R-L circuit the transient part is?
17. The current in the R-L circuit at a time t = 0+ is?
18. The s-domain equivalent of the inductor reduces to an inductor with impedance?
19. If the roots of an equation are real and unequal, then the response will be?
20. After how many time constants, the transient part reaches more than 99 percent of its final value?