1
GATE ECE 2007
MCQ (Single Correct Answer)
+2
-0.6
A $$\lambda /2$$ dipole is kept horizontally at a height of $${\lambda _0}/2$$ above a perfectly conducting infinite ground plane. The radiation pattern in the plane of the dipole ($$\overrightarrow E $$ plane) looks approximately as
A
GATE ECE 2007 Electromagnetics - Antennas Question 35 English Option 1
B
GATE ECE 2007 Electromagnetics - Antennas Question 35 English Option 2
C
GATE ECE 2007 Electromagnetics - Antennas Question 35 English Option 3
D
GATE ECE 2007 Electromagnetics - Antennas Question 35 English Option 4
2
GATE ECE 2006
MCQ (Single Correct Answer)
+2
-0.6
A mast antenna consisting of a 50 meter long vertical conductor operates over a perfectly conducting ground plane. It is base-fed at frequency of 600 kHz. The radiation resistance of the antenna in ohms is
A
$${{2\,\,{\pi ^2}} \over 5}$$
B
$${{\,\,{\pi ^2}} \over 5}$$
C
$${{4\,\,{\pi ^2}} \over 5}$$
D
$$20\,\,\,{\pi ^2}$$
3
GATE ECE 2005
MCQ (Single Correct Answer)
+2
-0.6
Two identical and parallel dipole antennas are kept apart by a distance $$\lambda /4$$ of in the H-plane. They are fed with equal currents but the right most antenna has a phase shift of +90°. The radiation pattern is given as
A
GATE ECE 2005 Electromagnetics - Antennas Question 37 English Option 1
B
GATE ECE 2005 Electromagnetics - Antennas Question 37 English Option 2
C
GATE ECE 2005 Electromagnetics - Antennas Question 37 English Option 3
D
GATE ECE 2005 Electromagnetics - Antennas Question 37 English Option 4
4
GATE ECE 2003
MCQ (Single Correct Answer)
+2
-0.6
Two identical antennas are placed in the $$\theta = \pi /2$$ plane as shown in figure. The elements have equal amplitude excitation with 180° polarity difference, operating at wavelength λ. The correct value of the magnitude of the far zone resultant electric field strength normalized with that of a single element, both computed for $$\phi = 0$$ is GATE ECE 2003 Electromagnetics - Antennas Question 38 English
A
$$2\,\cos \left( {{{2\,\pi s} \over \lambda }} \right)$$
B
$$2\,\sin \left( {{{2\,\pi s} \over \lambda }} \right)$$
C
$$2\,\cos \left( {{{\pi s} \over \lambda }} \right)$$
D
$$2\,\sin \left( {{{\pi s} \over \lambda }} \right)$$
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