Question

With Is disconnected I = - 1, when Is = b is connected, the value of I will become

a.

2 A

b.

-1 A

c.

1 A

d.

3 A

Answer: (c).1 A

Interact with the Community - Share Your Thoughts

Uncertain About the Answer? Seek Clarification Here.

Understand the Explanation? Include it Here.

Q. With Is disconnected I = - 1, when Is = b is connected, the value of I will become

Similar Questions

Explore Relevant Multiple Choice Questions (MCQs)

Q. In figure, the switch is closed at t = 0. After some time i = 6A and rate of change of current was 4A/s. The value of inductor is

Q. In figure the switch has been in position 1 for a long time. At t = 0, the switch is moved to position 2. The equation for transient current is

Q. In the following circuit, i(t) under steady state is

Q. The equivalent circuit of a resistor is shown in the given figure. The resistor will be non-inductive if

Q. In figure, the voltage V1 = 4∠0 V. The source voltage V2 is

Q. Figure shows an RC circuit. The magnitude plot V2/V1

Q. In figure, A is ideal ammeter having zero resistance. It will read __________ ampere.

Q. The current wave shown in figure is applied by a 0.1 F capacitor at t = 0. At t = 0+, the voltage across capacitor is

Q. The average value of delayed full wave rectified sine wave (figure) is

Q. A 2 mH inductor with some initial current can be represented as shown below, where s is the Laplace transform variable. The value of initial current is

Q. The Z parameters Z11 and Z21 for the 2-port network in the figure.

Q. For the wave shown in figure, the average value is

Q. In the figure circuit, V1 = 40 V. When R is 10 Ω. When R is zero, the value of V2 will be

Q. The Thevenin Resistance of the circuit is

Q. In the circuit shown in the given figure, RL will absorb maximum power when its value is

Q. The circuit in figure has reached steady values with switch open. If switch is closed at t = 0 the voltage across 2 μF capacitance at t = 0+ is

Q. In the circuit of figure

Q. In a conductor, voltage v, conductance G and charges q are related as

Q. The current wave in figure is passed through 3 H inductor. The voltage across inductance during the period 2 < t < 3 seconds is

Q. In figure, the charge on 0.8 μF capacitor is

Recommended Subjects

Are you eager to expand your knowledge beyond Electronics and Communication Engineering? We've handpicked a range of related categories that you might find intriguing.

Click on the categories below to discover a wealth of MCQs and enrich your understanding of various subjects. Happy exploring!