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This section includes 17 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 value of α in the attenuation band of constant k-low pass filter is? |
A. | α=2 cosh-1(fc/f) |
B. | α=cosh-1(f/fc)c) α=2 cosh-1(f/f |
C. | α=2 cosh-1(f/fc) |
D. | α=cosh-1(fc/f) |
Answer» D. α=cosh-1(fc/f) | |
2. |
The value of β in the attenuation band of constant k-low pass filter is? |
A. | 0 |
B. | π |
C. | π/2 |
D. | π/4 |
Answer» C. π/2 | |
3. |
The value of α in the pass band of constant k-low pass filter is? |
A. | 2 cosh-1(fc/f) |
B. | cosh-1(fc/f)c) cosh-1(f/fc)d) 2 cosh-1(f/f |
C. | cosh-1(f/fc) |
D. | 2 cosh-1(f/fc) |
Answer» E. | |
4. |
Determine the value of k in the circuit shown below. |
A. | √LC |
B. | √((L/C)) |
C. | √((C/L)) |
D. | √((1/CL)) |
Answer» C. √((C/L)) | |
5. |
The value of Z1Z2 in the circuit shown below is? |
A. | L/C |
B. | C/L |
C. | 1/LC |
D. | LC |
Answer» B. C/L | |
6. |
In the circuit shown below, find the value of Z2. |
A. | jωC |
B. | 2 jωC |
C. | 1/jωC |
D. | 1/2 jωC |
Answer» D. 1/2 jωC | |
7. |
In the circuit shown below, find the value of Z1. |
A. | jωL |
B. | 2 jωL |
C. | jωL/2 |
D. | 4 jωL |
Answer» B. 2 jωL | |
8. |
A network either T or π, is said to be of the constant-k type if Z1 and Z2 of the network satisfies the relation? |
A. | Z1Z2 = k |
B. | Z1Z2 = k2 |
C. | Z1Z2 = k3 |
D. | Z1Z2 = k4 |
Answer» C. Z1Z2 = k3 | |
9. |
THE_VALUE_OF_‚ÂÀ√≠¬¨¬±_IN_THE_ATTENUATION_BAND_OF_CONSTANT_K-LOW_PASS_FILTER_IS??$# |
A. | α=2 cosh<sup>-1</sup>⁡(f<sub>c</sub>/f) |
B. | α=cosh<sup>-1</sup>⁡(f/f<sub>c</sub>) |
C. | α=2 cosh<sup>-1</sup>⁡(f/f<sub>c</sub>) |
D. | α=cosh<sup>-1</sup>⁡(f<sub>c</sub>/f) |
Answer» D. ‚âà√≠¬¨¬±=cosh<sup>-1</sup>‚Äö√Ñ√∂‚àö√ñ¬¨‚àû(f<sub>c</sub>/f) | |
10. |
The_value_of_α_in_the_pass_band_of_constant_k-low_pass_filter_is?$# |
A. | π |
B. | π/4 |
C. | π/2 |
D. | 0 |
Answer» E. | |
11. |
The value of β in the attenuation band of constant k-low pass filter is?# |
A. | 0 |
B. | π |
C. | π/2 |
D. | π/4 |
Answer» C. ‚âà√¨‚àö√ë/2 | |
12. |
The value of α in the pass band of constant k-low pass filter is?$ |
A. | 2 cosh<sup>-1</sup>⁡(f<sub>c</sub>/f) |
B. | cosh<sup>-1</sup>⁡⁡(f<sub>c</sub>/f) |
C. | cosh<sup>-1</sup>⁡(f/f<sub>c</sub>) |
D. | 2 cosh<sup>-1</sup>⁡(f/f<sub>c</sub>) |
Answer» E. | |
13. |
The cut-off frequency of the constant k-low pass filter is? |
A. | 1/‚àöLC |
B. | 1/(π√LC) |
C. | ‚àöLC |
D. | π√LC |
Answer» C. ‚Äö√Ñ√∂‚àö‚Ć‚àö‚àÇLC | |
14. |
Determine the value of k in the circuit shown in the question 2. |
A. | ‚àöLC |
B. | ‚àö((L/C) ) |
C. | ‚àö((C/L) ) |
D. | ‚àö((1/CL) ) |
Answer» C. ‚Äö√Ñ√∂‚àö‚Ć‚àö‚àÇ((C/L) ) | |
15. |
The value of Z1Z2 in the circuit shown in the question 2 is? |
A. | L/C |
B. | C/L |
C. | 1/LC |
D. | LC |
Answer» B. C/L | |
16. |
In the circuit shown in the question 2, find the value of Z2. |
A. | jωC |
B. | 2 jωC |
C. | 1/jωC |
D. | 1/2 jωC |
Answer» D. 1/2 j‚âà√¨‚àö¬¢C | |
17. |
A network either T or π, is said to be of the constant-k type if Z1 and Z2 of the network satisfy the relation? |
A. | Z<sub>1</sub>Z<sub>2</sub> = k |
B. | Z<sub>1</sub>Z<sub>2</sub> = k<sup>2</sup> |
C. | Z<sub>1</sub>Z<sub>2</sub> = k<sup>3</sup> |
D. | Z<sub>1</sub>Z<sub>2</sub> = k<sup>4</sup> |
Answer» C. Z<sub>1</sub>Z<sub>2</sub> = k<sup>3</sup> | |