EE-6202 - Electric Circuits Theory oed answer key

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Awesome StudentQuestion • Electric Circuits Theory 2

In the formulawe denoteaaas the

Answer

Alpha frequency(incorrect)

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Awesome StudentQuestion • Electric Circuits Theory 2

In the formulawe denoteωω0as the

Answer

Resonant radian frequency

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Awesome StudentQuestion • Electric Circuits Theory 2

The formula for time constant is

Answer

τ=LRτ=LR

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Awesome StudentQuestion • Electric Circuits Theory 2

A capacitor is an open circuit to dc

Answer

True

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Awesome StudentQuestion • Electric Circuits Theory 2

The impedance of an inductor is denoted by

Answer

J(−1/ωC)J(−1/ωC)

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Awesome StudentQuestion • Electric Circuits Theory 2

For a resistor, the voltage and current are

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Awesome StudentQuestion • Electric Circuits Theory 2

For n inductor, the voltage and current are

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Awesome StudentQuestion • Electric Circuits Theory 2

The unit of inductance is named in honor of

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Awesome StudentQuestion • Electric Circuits Theory 2

For a capacitor, the voltage and current are

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Awesome StudentQuestion • Electric Circuits Theory 2

Whenthe response of a second-order circuit is

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Awesome StudentQuestion • Electric Circuits Theory 2

In the figure, the voltage and the current are

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Awesome StudentQuestion • Electric Circuits Theory 2

The unit for capacitance is named after physicist

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Awesome StudentQuestion • Electric Circuits Theory 2

When impedances are in series, they carry the same

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Awesome StudentQuestion • Electric Circuits Theory 2

Find the equivalent inductance of the circuit below

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Awesome StudentQuestion • Electric Circuits Theory 2

The current through an inductor can change abruptly

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Awesome StudentQuestion • Electric Circuits Theory 2

Find the equivalent capacitance of the circuit below

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Awesome StudentQuestion • Electric Circuits Theory 2

When impedances are in parallel, they carry the same

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Awesome StudentQuestion • Electric Circuits Theory 2

The voltage on a capacitor can change instantaneously

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Awesome StudentQuestion • Electric Circuits Theory 2

The current through an inductor cannot change abruptly

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