Explore topic-wise MCQs in Network Theory.

This section includes 13 Mcqs, each offering curated multiple-choice questions to sharpen your Network Theory knowledge and support exam preparation. Choose a topic below to get started.

1.

The transform admittance of the capacitor is?

A. 1/sC
B. sC
C. 1/C
D. C
Answer» C. 1/C
2.

The transform impedance of the capacitor is?

A. C
B. 1/C
C. sC
D. 1/sC
Answer» E.
3.

The equivalent transform circuit contains an admittance of value ____ and equivalent transform current source.

A. 1/L
B. 1/sL
C. L
D. sL
Answer» C. L
4.

THE_TRANSFORM_IMPEDANCE_OF_THE_CAPACITOR_IS??$

A. C
B. 1/C
C. sC
D. 1/sC
Answer» E.
5.

The_transform_admittance_of_the_capacitor_is?$

A. 1/sC
B. sC
C. 1/C
D. C
Answer» C. 1/C
6.

The equivalent transform circuit contains an admittance of value ____ and equivalent transform current source?

A. 1/L
B. 1/sL
C. L
D. sL
Answer» C. L
7.

The transform admittance of the inductor is?

A. 1/sL
B. sL
C. 1/L
D. L
Answer» B. sL
8.

The transform impedance of the inductor is?

A. L
B. 1/L
C. sL
D. 1/sL
Answer» D. 1/sL
9.

The ratio of transform current to the transform voltage is defined as ________ of the resistor.

A. transform admittance
B. transform impedance
C. transform current
D. transform voltage
Answer» B. transform impedance
10.

The ratio of transform voltage to the transform current is defined as _________ of the resistor.

A. transform voltage
B. transform current
C. transform impedance
D. transform admittance
Answer» D. transform admittance
11.

The imaginary part of the complex frequency is called?

A. angular frequency
B. sampling frequency
C. neper frequency
D. radian frequency
Answer» E.
12.

The real part of the complex frequency is called?

A. radian frequency
B. neper frequency
C. sampling frequency
D. angular frequency
Answer» C. sampling frequency
13.

The solution of differential equations for networks is of the form?

A. i(t)=K<sub>n</sub> e<sup>⁡(s<sub>n</sub> t)</sup>
B. i(t)=K<sub>n</sub> e⁡<sup>(-s<sub>n</sub> t)</sup>
C. i(t)=-K<sub>n</sub> e⁡<sup>(-s<sub>n</sub> t)</sup>
D. i(t)=-K<sub>n</sub> e⁡<sup>(s<sub>n</sub> t)</sup>
Answer» B. i(t)=K<sub>n</sub> e‚Äö√Ñ√∂‚àö√ñ¬¨‚àû<sup>(-s<sub>n</sub> t)</sup>