

MCQOPTIONS
Saved Bookmarks
This section includes 25 Mcqs, each offering curated multiple-choice questions to sharpen your Optical Communication knowledge and support exam preparation. Choose a topic below to get started.
1. |
Digital transmission is more likely to be affected by modal noise. |
A. | True |
B. | False |
Answer» C. | |
2. |
The modal noise can be reduced by __________ |
A. | Decreasing width of signal longitudinal mode |
B. | Increasing coherence time |
C. | Decreasing number of longitudinal modes |
D. | Using fiber with large numerical aperture |
Answer» E. | |
3. |
Disturbance along the fiber such as vibrations, discontinuities, connectors, splices, source/detectors coupling result in __________ |
A. | Modal noise |
B. | Inter-symbol interference |
C. | Infrared interference |
D. | Pulse broadening |
Answer» B. Inter-symbol interference | |
4. |
The modal noise occurs when uncorrected source frequency is? |
A. | δf>>1/δT |
B. | δf=1/δT |
C. | δf<<1/δT |
D. | Negligible |
Answer» B. δf=1/δT | |
5. |
Practical pulse broadening value for graded index fiber lies in the range of __________ |
A. | 0.9 to 1.2 ns/km |
B. | 0.2 to 1 ns/km |
C. | 0.23 to 5 ns/km |
D. | 0.45 to 8 ns/km |
Answer» C. 0.23 to 5 ns/km | |
6. |
Intermodal dispersion in multimode fibers is minimized with the use of step-index fibers. |
A. | True |
B. | False |
Answer» C. | |
7. |
The index profile of a core of multimode graded index fiber is given by?a) N (r) = n1 [1 – 2Δ(r2/a)2]1/2; r
|
A. | N (r) = n1 [1 – 2Δ(r2/a)2]1/2; r<a |
B. | N (r) = n1 [3 – 2Δ(r2/a)2]1/2; r<a |
C. | N (r) = n1 [5 – 2Δ(r2/a)2]1/2; r>a |
D. | N (r) = n1 [1 – 2Δ(r2/a)2]1/2; r<a |
Answer» E. | |
8. |
The differential attenuation of modes reduces intermodal pulse broadening on a multimode optical link. |
A. | True |
B. | False |
Answer» B. False | |
9. |
Consider a single mode fiber having core refractive index n1= 1.5. The fiber length is 12m. Find the time taken by the axial ray to travel along the fiber. |
A. | 1.00μsec |
B. | 0.06μsec |
C. | 0.90μsec |
D. | 0.30μsec |
Answer» C. 0.90μsec | |
10. |
After Total Internal Reflection the Meridional ray __________ |
A. | Makes an angle equal to acceptance angle with the axial ray |
B. | Makes an angle equal to critical angle with the axial ray |
C. | Travels parallel equal to critical angle with the axial ray |
D. | Makes an angle equal to critical angle with the axial ray |
Answer» E. | |
11. |
Intermodal dispersion occurring in a large amount in multimode step index fiber results in ____________ |
A. | Propagation of the fiber |
B. | Propagating through the fiber |
C. | Pulse broadening at output |
D. | Attenuation of waves |
Answer» D. Attenuation of waves | |
12. |
PRACTICAL_PULSE_BROADENING_VALUE_FOR_GRADED_INDEX_FIBER_LIES_IN_THE_RANGE_OF?$ |
A. | 0.9 to 1.2 ns/km |
B. | 0.2 to 1 ns/km |
C. | 0.23 to 5 ns/km |
D. | 0.45 to 8 ns/km |
Answer» C. 0.23 to 5 ns/km | |
13. |
Disturbance along the fiber such as vibrations, discontinuities, connectors, splices, source/detectors coupling result in$ |
A. | Modal noise |
B. | Inter-symbol interference |
C. | Infrared interference |
D. | Pulse broadening |
Answer» E. | |
14. |
The modal noise occurs when uncorrected source frequency is$ |
A. | δf>>1/δT |
B. | δf=1/δT |
C. | δf<<1/δT |
D. | Negligible |
Answer» B. ‚âà√≠¬¨‚Ä¢f=1/‚âà√≠¬¨‚Ä¢T | |
15. |
Digital transmission is more likely to be affected by modal noise. State true or false |
A. | True |
B. | False |
Answer» C. | |
16. |
The modal noise can be reduced by |
A. | Decreasing width of signal longitudinal mode |
B. | Increasing coherence time |
C. | Decreasing number of longitudinal modes |
D. | Using fiber with large numerical aperture |
Answer» E. | |
17. |
Estimate RMS pulse broadening per km due to intermodal dispersion for multimode step index fiber where length of fiber is 4 km and pulse broadening per km is 80.6 ns? |
A. | 18.23ns/km |
B. | 20.15ns/km |
C. | 26.93ns/km |
D. | 10.23ns/km |
Answer» C. 26.93ns/km | |
18. |
Intermodal dispersion in multimode fibers is minimized with the use of step-index fibers. State whether the given statement is true or false. |
A. | True |
B. | False |
Answer» C. | |
19. |
The index profile of a core of multimode graded index fiber is given by- |
A. | N (r) = n1 [1 – 2Δ(r<sup>2</sup>/a)<sup>2</sup>]<sup>1/2</sup>; r<a |
B. | N (r) = n1 [3 – 2Δ(r<sup>2</sup>/a)<sup>2</sup>]<sup>1/2</sup>; r<a |
C. | N (r) = n1 [5 – 2Δ(r<sup>2</sup>/a)<sup>2</sup>]<sup>1/2</sup>; r>a |
D. | N (r) = n1 [1 – 2Δ(r<sup>2</sup>/a)<sup>2</sup>]<sup>1/2</sup>; r<a |
Answer» E. | |
20. |
The differential attenuation of modes reduces intermodal pulse broadening on a multimode optical link. State whether the given statement is true or false. |
A. | True |
B. | False |
Answer» B. False | |
21. |
A multimode step-index fiber has a core refractive index of 1.5 and relative refractive index difference of 1%. The length of the optical link is 6 km. Estimate the RMS pulse broadening due to intermodal dispersion on the link. |
A. | 92.6 ns |
B. | 86.7 ns |
C. | 69.3 ns |
D. | 68.32 ns |
Answer» C. 69.3 ns | |
22. |
A 4 km optical link consists of multimode step index fiber with core refractive index of 1.3 and a relative refractive index difference of 1%. Find the delay difference between the slowest and fastest modes at the fiber output. |
A. | 0.173 μsec |
B. | 0.152 μsec |
C. | 0.96 μsec |
D. | 0.121 μsec |
Answer» B. 0.152 ‚âà√≠¬¨‚à´sec | |
23. |
Consider a single mode fiber having core refractive index n1= 1.5. |
A. | |
B. | 1.00μsec |
C. | 0.06μsec |
Answer» C. 0.06‚âà√≠¬¨‚à´sec | |
24. |
After Total Internal Reflection the Meridional ray |
A. | Makes an angle equal to acceptance angle with the axial ray |
B. | Makes an angle equal to critical angle with the axial ray |
C. | Travels parallel equal to critical angle with the axial ray |
D. | Makes an angle equal to critical angle with the axial ray |
Answer» E. | |
25. |
Intermodal dispersion occurring in a large amount in multimode step index fiber results in |
A. | Propagation of the fiber |
B. | Propagating through the fiber |
C. | Pulse broadening at output |
D. | Attenuation of waves |
Answer» D. Attenuation of waves | |