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In spherical coordinates, let denote unit vectors along the directions.
E = 100/r sin θ cos (wt –br) âθ V/M
H = 0.265/r sin θ cos (wt –br) âΦ V/M
represent the electric and magnetic field components of the EM wave at large distances r from a dipole antenna, in free space. The average power (W) crossing the hemispherical shell located at r = 1 km, 0≤ q≤ π /2 is ____(Answer up to one decimal place)
    Correct answer is '55.5'. Can you explain this answer?
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    In spherical coordinates, let denote unit vectors along the directions.E = 100/r sin θ cos (wt –br) âθ V/MH = 0.265/r sin θ cos (wt –br) âΦ V/Mrepresent the electric and magnetic field components of the EM wave at large distances r from a dipole antenna, in free space. The average power (W) crossing the hemispherical shell located at r = 1 km, 0≤ q≤ π /2 is ____(Answer up to one decimal place)Correct answer is '55.5'. Can you explain this answer?
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    In spherical coordinates, let denote unit vectors along the directions.E = 100/r sin θ cos (wt –br) âθ V/MH = 0.265/r sin θ cos (wt –br) âΦ V/Mrepresent the electric and magnetic field components of the EM wave at large distances r from a dipole antenna, in free space. The average power (W) crossing the hemispherical shell located at r = 1 km, 0≤ q≤ π /2 is ____(Answer up to one decimal place)Correct answer is '55.5'. 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 In spherical coordinates, let denote unit vectors along the directions.E = 100/r sin θ cos (wt –br) âθ V/MH = 0.265/r sin θ cos (wt –br) âΦ V/Mrepresent the electric and magnetic field components of the EM wave at large distances r from a dipole antenna, in free space. The average power (W) crossing the hemispherical shell located at r = 1 km, 0≤ q≤ π /2 is ____(Answer up to one decimal place)Correct answer is '55.5'. 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 In spherical coordinates, let denote unit vectors along the directions.E = 100/r sin θ cos (wt –br) âθ V/MH = 0.265/r sin θ cos (wt –br) âΦ V/Mrepresent the electric and magnetic field components of the EM wave at large distances r from a dipole antenna, in free space. The average power (W) crossing the hemispherical shell located at r = 1 km, 0≤ q≤ π /2 is ____(Answer up to one decimal place)Correct answer is '55.5'. Can you explain this answer?.
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    Here you can find the meaning of In spherical coordinates, let denote unit vectors along the directions.E = 100/r sin θ cos (wt –br) âθ V/MH = 0.265/r sin θ cos (wt –br) âΦ V/Mrepresent the electric and magnetic field components of the EM wave at large distances r from a dipole antenna, in free space. The average power (W) crossing the hemispherical shell located at r = 1 km, 0≤ q≤ π /2 is ____(Answer up to one decimal place)Correct answer is '55.5'. Can you explain this answer? defined & explained in the simplest way possible. Besides giving the explanation of In spherical coordinates, let denote unit vectors along the directions.E = 100/r sin θ cos (wt –br) âθ V/MH = 0.265/r sin θ cos (wt –br) âΦ V/Mrepresent the electric and magnetic field components of the EM wave at large distances r from a dipole antenna, in free space. The average power (W) crossing the hemispherical shell located at r = 1 km, 0≤ q≤ π /2 is ____(Answer up to one decimal place)Correct answer is '55.5'. Can you explain this answer?, a detailed solution for In spherical coordinates, let denote unit vectors along the directions.E = 100/r sin θ cos (wt –br) âθ V/MH = 0.265/r sin θ cos (wt –br) âΦ V/Mrepresent the electric and magnetic field components of the EM wave at large distances r from a dipole antenna, in free space. The average power (W) crossing the hemispherical shell located at r = 1 km, 0≤ q≤ π /2 is ____(Answer up to one decimal place)Correct answer is '55.5'. Can you explain this answer? has been provided alongside types of In spherical coordinates, let denote unit vectors along the directions.E = 100/r sin θ cos (wt –br) âθ V/MH = 0.265/r sin θ cos (wt –br) âΦ V/Mrepresent the electric and magnetic field components of the EM wave at large distances r from a dipole antenna, in free space. The average power (W) crossing the hemispherical shell located at r = 1 km, 0≤ q≤ π /2 is ____(Answer up to one decimal place)Correct answer is '55.5'. Can you explain this answer? theory, EduRev gives you an ample number of questions to practice In spherical coordinates, let denote unit vectors along the directions.E = 100/r sin θ cos (wt –br) âθ V/MH = 0.265/r sin θ cos (wt –br) âΦ V/Mrepresent the electric and magnetic field components of the EM wave at large distances r from a dipole antenna, in free space. The average power (W) crossing the hemispherical shell located at r = 1 km, 0≤ q≤ π /2 is ____(Answer up to one decimal place)Correct answer is '55.5'. Can you explain this answer? tests, examples and also practice Electronics and Communication Engineering (ECE) tests.
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