Derive the vector potential A, the far field E, the total radiated power Prad, and the radiation resistance R, of a mono

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Derive the vector potential A, the far field E, the total radiated power Prad, and the radiation resistance R, of a mono

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Derive The Vector Potential A The Far Field E The Total Radiated Power Prad And The Radiation Resistance R Of A Mono 1
Derive The Vector Potential A The Far Field E The Total Radiated Power Prad And The Radiation Resistance R Of A Mono 1 (48.89 KiB) Viewed 53 times
please make sure your answers are correct
Derive The Vector Potential A The Far Field E The Total Radiated Power Prad And The Radiation Resistance R Of A Mono 2
Derive The Vector Potential A The Far Field E The Total Radiated Power Prad And The Radiation Resistance R Of A Mono 2 (40.82 KiB) Viewed 53 times
Derive the vector potential A, the far field E, the total radiated power Prad, and the radiation resistance R, of a monopole above a perfectly conducting plane, as shown. The length of this antenna is 1/2 (<<2) and its current distribution is I=Ine (1-2z/l) for 0≤z≤l/2. l/2 1 //////// Perfectly Conducting Plane

le jkr Ã= μolo - 2 4лr 1 Prad (1) 7 (Watts), and R, = 107² - â. (Weber / m), E = joul-sinâ, (V / m), e jkr 4лr 10.-(4) 2 Ω.
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