Explore topic-wise MCQs in Network Theory.

This section includes 10 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.

Consider the impedance function Y(s)=(s2+4s+3)/(3s2+18s+24). Find the value of C2 after realizing by second Foster method.

A. 1/16
B. 1/8
C. 1/32
D. 1/64
Answer» D. 1/64
2.

Consider the impedance function Y(s)=(s2+4s+3)/(3s2+18s+24). Find the value of R2 after realizing by second Foster method.

A. 5
B. 6
C. 7
D. 8
Answer» E.
3.

Consider the impedance function Y(s)=(s2+4s+3)/(3s2+18s+24). Find the value of C1 after realizing by second Foster method.

A. 1/24
B. 1/12
C. 1/6
D. 1/3
Answer» B. 1/12
4.

Consider the impedance function Y(s)=(s2+4s+3)/(3s2+18s+24). Find the value of R1 after realizing by second Foster method.

A. 16
B. 12
C. 8
D. 4
Answer» C. 8
5.

Consider the impedance function Y(s)=(s2+4s+3)/(3s2+18s+24). Find the value of R0 after realizing by second Foster method.

A. 4
B. 8
C. 12
D. 16
Answer» C. 12
6.

Consider the impedance function Z(s)=3(s+2)(s+4)/(s+1)(s+3). Find the value of R after realizing by first Foster method.

A. 1
B. 2
C. 3
D. 4
Answer» D. 4
7.

Consider the impedance function Z(s)=3(s+2)(s+4)/(s+1)(s+3). Find the value of R2 after realizing by first Foster method.

A. 1
B. 1/2
C. 1/4
D. 1/8
Answer» C. 1/4
8.

Consider the impedance function Z(s)=3(s+2)(s+4)/(s+1)(s+3). Find the value of C2 after realizing by first Foster method.

A. 1/3
B. 3
C. 3/2
D. 2/3
Answer» E.
9.

Consider the impedance function Z(s)=3(s+2)(s+4)/(s+1)(s+3). Find the value of C1 after realizing by first Foster method.

A. 1/9
B. 9
C. 2/9
D. 9/2
Answer» D. 9/2
10.

Consider the impedance function Z(s)=3(s+2)(s+4)/(s+1)(s+3). Find the value of R1 after realizing by first Foster method.

A. 9/2
B. 2/9
C. 9
D. 1/9
Answer» B. 2/9