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Network Theory Mock Test 10


Correct Answer: 2 points | Wrong: -1 point
Grades: A* (100% score) | A (80%-99%) | B (60%-80%) | C (40%-60%) | D (0%-40%)
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Question 1 of 10

1. For performing second Foster form, after splitting the Z (S) in The driving point impedance of a one-port reactive network is given by Z(s)=5(s2+4)(s2+25)/s(s2+16), what is the coefficient of s/((s2+4)) is?

Question 1 of 10

Question 2 of 10

2. For a Band Pass Filter, the slope of the filter is given as 80dB/decade. The order of the Band Pass Filter is __________

Question 2 of 10

Question 3 of 10

3. The driving point impedance of a one-port reactive network is given by Z(s)=5(s2+4)(s2+25)/s(s2+16). After taking the partial fractions, what is the value of L?

Question 3 of 10

Question 4 of 10

4. Consider the admittance function, Y(s)=((2s2+16s+30))/(s2+6s+8). Determine the value of L1 after performing the second form of Foster method.

Question 4 of 10

Question 5 of 10

5. Determine the value of L1 by performing second foster form for Z(s)=5(s2+4)(s2+25)/s(s2+16).

Question 5 of 10

Question 6 of 10

6. Consider the impedance function Z(s)=(s2+6s+8)/(s2+3s). Find the value of C1 after performing the second Cauer form.

Question 6 of 10

Question 7 of 10

7. Consider the impedance function Z(s)=(s2+6s+8)/(s2+3s). Find the value of R1 after performing the second Cauer form.

Question 7 of 10

Question 8 of 10

8. Viewed from the terminals A and B the circuit given below can be reduced to an equivalent circuit with a single voltage source in series with a resistor with ________
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Question 8 of 10

Question 9 of 10

9. The roots of the odd and even parts of a Hurwitz polynomial P (s) lie on ____________

Question 9 of 10

Question 10 of 10

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

Question 10 of 10


 

Manish Bhojasia - Founder & CTO at Sanfoundry
Manish Bhojasia, a technology veteran with 20+ years @ Cisco & Wipro, is Founder and CTO at Sanfoundry. He lives in Bangalore, and focuses on development of Linux Kernel, SAN Technologies, Advanced C, Data Structures & Alogrithms. Stay connected with him at LinkedIn.

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