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Consider a rectangular coordinate system ( x, y,z) with unit vector ax, ay and az . A plane wave travelling in the region z ≥ 0 with electric field vector is incident normally on the plane at z = 0, where β is the phase constant. The region z ≥ 0 is in free space and the region z < 0="" is="" filled="" with="" a="" lossless="" medium="" (permittivity="" ε="" />0 permeability μ = 4 μ0, where ε0= 8.85 ×10−12 F/m and μ= 4 π ×10-7 H/m ). The value of reflection coefficient is
  • a)
    1/3
  • b)
    3/5
  • c)
    2/5
  • d)
    2/3
Correct answer is option 'A'. Can you explain this answer?
Most Upvoted Answer
Consider a rectangular coordinate system ( x, y,z) with unit vector a...
Given : Medium 1 ( z ≥ 0)
(i) Medium 1 is free space.
(ii) μ1 = μ0 , ε1= ε0
(iii) E1 = 10 cos (2×108 t + βz)
(iv)
(v)
Medium 2 ( z < />
Hence, the correct option is (A).
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Community Answer
Consider a rectangular coordinate system ( x, y,z) with unit vector a...
Given : Medium 1 ( z ≥ 0)
(i) Medium 1 is free space.
(ii) μ1 = μ0 , ε1= ε0
(iii) E1 = 10 cos (2×108 t + βz)
(iv)
(v)
Medium 2 ( z < />
Hence, the correct option is (A).
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Consider a rectangular coordinate system ( x, y,z) with unit vector ax, ay and az . A plane wave travelling in the region z ≥ 0 with electric field vector is incident normally on the plane at z = 0, where β is the phase constant. The region z ≥ 0 is in free space and the region z 0 permeability μ = 4 μ0, where ε0= 8.85 ×10−12 F/m and μ= 4 π ×10-7 H/m ). The value of reflection coefficient isa)1/3b)3/5c)2/5d)2/3Correct answer is option 'A'. Can you explain this answer?
Question Description
Consider a rectangular coordinate system ( x, y,z) with unit vector ax, ay and az . A plane wave travelling in the region z ≥ 0 with electric field vector is incident normally on the plane at z = 0, where β is the phase constant. The region z ≥ 0 is in free space and the region z 0 permeability μ = 4 μ0, where ε0= 8.85 ×10−12 F/m and μ= 4 π ×10-7 H/m ). The value of reflection coefficient isa)1/3b)3/5c)2/5d)2/3Correct answer is option 'A'. Can you explain this answer? for Electronics and Communication Engineering (ECE) 2024 is part of Electronics and Communication Engineering (ECE) preparation. The Question and answers have been prepared according to the Electronics and Communication Engineering (ECE) exam syllabus. Information about Consider a rectangular coordinate system ( x, y,z) with unit vector ax, ay and az . A plane wave travelling in the region z ≥ 0 with electric field vector is incident normally on the plane at z = 0, where β is the phase constant. The region z ≥ 0 is in free space and the region z 0 permeability μ = 4 μ0, where ε0= 8.85 ×10−12 F/m and μ= 4 π ×10-7 H/m ). The value of reflection coefficient isa)1/3b)3/5c)2/5d)2/3Correct answer is option 'A'. Can you explain this answer? covers all topics & solutions for Electronics and Communication Engineering (ECE) 2024 Exam. Find important definitions, questions, meanings, examples, exercises and tests below for Consider a rectangular coordinate system ( x, y,z) with unit vector ax, ay and az . A plane wave travelling in the region z ≥ 0 with electric field vector is incident normally on the plane at z = 0, where β is the phase constant. The region z ≥ 0 is in free space and the region z 0 permeability μ = 4 μ0, where ε0= 8.85 ×10−12 F/m and μ= 4 π ×10-7 H/m ). The value of reflection coefficient isa)1/3b)3/5c)2/5d)2/3Correct answer is option 'A'. Can you explain this answer?.
Solutions for Consider a rectangular coordinate system ( x, y,z) with unit vector ax, ay and az . A plane wave travelling in the region z ≥ 0 with electric field vector is incident normally on the plane at z = 0, where β is the phase constant. The region z ≥ 0 is in free space and the region z 0 permeability μ = 4 μ0, where ε0= 8.85 ×10−12 F/m and μ= 4 π ×10-7 H/m ). The value of reflection coefficient isa)1/3b)3/5c)2/5d)2/3Correct answer is option 'A'. Can you explain this answer? in English & in Hindi are available as part of our courses for Electronics and Communication Engineering (ECE). Download more important topics, notes, lectures and mock test series for Electronics and Communication Engineering (ECE) Exam by signing up for free.
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