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This section includes 7 Mcqs, each offering curated multiple-choice questions to sharpen your Electromagnetic Theory knowledge and support exam preparation. Choose a topic below to get started.
1. |
Identify the polarisation of the wave given that, Ex = 2 sin wt and Ey = 3 sin wt. |
A. | tLinear |
B. | tElliptical |
C. | tCircular |
D. | tParallel |
Answer» B. tElliptical | |
2. |
When the polarisation of the receiving antenna is unknown, to ensure that it receives atleast half the power, the transmitted wave should be |
A. | tLinearly polarised |
B. | tElliptically polarised |
C. | tCircularly polarised |
D. | tNormally polarised |
Answer» D. tNormally polarised | |
3. |
The Snell law is applicable for perpendicular polarisation and the Brewster law is applicable for parallel polarisation. State True/False. |
A. | tTrue |
B. | tFalse |
Answer» B. tFalse | |
4. |
Identify the polarisation of the wave given that, Ex = 2 cos wt and Ey = cos wt. |
A. | tElliptical |
B. | tCircular |
C. | tParallel |
D. | tLinear |
Answer» E. | |
5. |
For a non-zero Ex component and zero Ey component, the polarisation is |
A. | tParallel |
B. | tPerpendicular |
C. | tElliptical |
D. | tCircular |
Answer» B. tPerpendicular | |
6. |
Identify the polarisation of the wave given, Ex = 2 cos wt and Ey = 2 sin wt. The phase difference is +900. |
A. | tLeft hand circularly polarised |
B. | tRight hand circularly polarised |
C. | tLeft hand elliptically polarised |
D. | tRight hand elliptically polarised |
Answer» B. tRight hand circularly polarised | |
7. |
Identify the polarisation of the wave given, Ex = 2 cos wt and Ey = sin wt. The phase difference is -900. |
A. | tLeft hand circularly polarised |
B. | tRight hand circularly polarised |
C. | tLeft hand elliptically polarised |
D. | tRight hand elliptically polarised |
Answer» E. | |