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Networks Analysis and Synthesis Questions

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From the diagram given below showing characteristics of voltage across resistor and inductor with respect to time, what conclusion can be drawn due to exponential growth of current through inductor?


AVoltage across resistor and inductor increases

BVoltage across resistor and inductor decreases

CVoltage across resistor increases but decreases across inductor

DVoltage across resistor decreases but increases across inductor

Answer: Option C

Explanation:

Observing the graph we can see that Vr(t) is increasing and Vl(t) is decreasing gradually.

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In a purely capacitive circuit, the current …..the voltage by …….


A( lags, 0o

B(leads, 90o

C(lags, 90o

D( lags, 45o

Answer: Option B

Explanation:

Here is no explanation for this answer

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In case of ideal current sources, they have


Azero internal resistance

Blow value of voltage

Clarge value of currrent

Dinfinite internal resistance

Answer: Option D

Explanation:

The internal resistance of an ideal current source is infinite. An independent current source with zero current is identical to an ideal open circuit. The voltage across an ideal current source is completely determined by the circuit it is connected to.

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A voltage source having an open circuit voltage of 200 V and internal resistance of 50? is equivalent to a current source of


A4A with 50? in parallel

B4A with 50? in series

C0.5A with 50? in parallel

Dnone of the mentioned

Answer: Option A

Explanation:

V=200 v R= 50 so I= 4amp Now the same can be represented as 4A with 50 in parallel.

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What is the name of the pressure that moves electrons in a closed circuit?


AVoltage

Bohms

Camperes

Dcoulumbs

Answer: Option A

Explanation:

Voltage which is also called as electromotive force(pressure), is a measure of the potential difference in charge between two points in an electrical field which is responsible for the movement of electrons in a closed circuit.

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What is the value of ZL


AR

BR +

CR -

DNone of these

Answer: Option C

Explanation:

The value of load for maximum power transfer is given by complex conjugate of ZAB. ZAB

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Which theorem assists in replacement of an impedance branch over the network by the other network comprising different circuit components, without affecting the V-I relations throughout the entire network?


A

B

C

D

Answer: Option A

Explanation:

The superposition theorem states that in any linear network containing two or more sources, the response (current) in any element is equal to the algebraic sum of the response (current) caused by individual sources acting alone, while the other sources are inoperative.

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