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The electric filed of a uniform plane wave travelling along the negative z direction is given by the
following equation:
This wave is incident upon a receiving antenna placed at the origin and whose radiated electric
field towards the incident wave is given by the following equation:
The polarization of the incident wave, the polarization of the antenna and losses due to the
polarization mismatch are, respectively,
  • a)
    Linear, Circular (clockwise), –5dB
  • b)
    Circular (clockwise), Linear, –5dB
  • c)
    Circular (clockwise), Linear, –3dB
  • d)
    Circular (anti clockwise), Linear, –3dB
Correct answer is option 'C'. Can you explain this answer?
Verified Answer
The electric filed of a uniform plane wave travelling along the negati...
Given
As a tip of electric field intensity is tracing a circle when time varies, hence the wave is said to be circularly polarized in clockwise direction (or) RHCP. Polarizing vector of incident wave is given
by,
As both x & y components are in-phase, hence the wave is said to be linear polarized. Polarizing vector of radiated field is
polarizing mismatch; The polarizing mismatch is said to
have, if the polarization of receiving antenna is not same on the polarization of the incident wave.
The polarization loss factor (PLF) characterizes the loss of EM power due to polarization mismatch.
 
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The electric filed of a uniform plane wave travelling along the negative z direction is given by thefollowing equation:This wave is incident upon a receiving antenna placed at the origin and whose radiated electricfield towards the incident wave is given by the following equation:The polarization of the incident wave, the polarization of the antenna and losses due to thepolarization mismatch are, respectively,a)Linear, Circular (clockwise), –5dBb)Circular (clockwise), Linear, –5dBc)Circular (clockwise), Linear, –3dBd)Circular (anti clockwise), Linear, –3dBCorrect answer is option 'C'. Can you explain this answer?
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The electric filed of a uniform plane wave travelling along the negative z direction is given by thefollowing equation:This wave is incident upon a receiving antenna placed at the origin and whose radiated electricfield towards the incident wave is given by the following equation:The polarization of the incident wave, the polarization of the antenna and losses due to thepolarization mismatch are, respectively,a)Linear, Circular (clockwise), –5dBb)Circular (clockwise), Linear, –5dBc)Circular (clockwise), Linear, –3dBd)Circular (anti clockwise), Linear, –3dBCorrect answer is option 'C'. Can you explain this answer? for GATE 2024 is part of GATE preparation. The Question and answers have been prepared according to the GATE exam syllabus. Information about The electric filed of a uniform plane wave travelling along the negative z direction is given by thefollowing equation:This wave is incident upon a receiving antenna placed at the origin and whose radiated electricfield towards the incident wave is given by the following equation:The polarization of the incident wave, the polarization of the antenna and losses due to thepolarization mismatch are, respectively,a)Linear, Circular (clockwise), –5dBb)Circular (clockwise), Linear, –5dBc)Circular (clockwise), Linear, –3dBd)Circular (anti clockwise), Linear, –3dBCorrect answer is option 'C'. Can you explain this answer? covers all topics & solutions for GATE 2024 Exam. Find important definitions, questions, meanings, examples, exercises and tests below for The electric filed of a uniform plane wave travelling along the negative z direction is given by thefollowing equation:This wave is incident upon a receiving antenna placed at the origin and whose radiated electricfield towards the incident wave is given by the following equation:The polarization of the incident wave, the polarization of the antenna and losses due to thepolarization mismatch are, respectively,a)Linear, Circular (clockwise), –5dBb)Circular (clockwise), Linear, –5dBc)Circular (clockwise), Linear, –3dBd)Circular (anti clockwise), Linear, –3dBCorrect answer is option 'C'. Can you explain this answer?.
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