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Analysis of the Characteristic Problem
Radiation in the Material Media
Radiation Resistance Per Unit Length
4 other sections not shown
25*DELE PUNCH 9 AMUR and/or permeable material beam current BETA BJ1I BJ1R BJOI BJOR BK1I BKOI BKOR bunched electron beam bunching frequency BY1I BYOI BYOR Cerenkov effect Cerenkov radiation characteristic problem charge density complex argument complex vector conditions for radiation coupling radius curves cylindrical DELM dielectric and permeability dielectric and/or permeable dielectric constant different values electric flux density electromagnetic electromagnetic radiation exponential exponential decay fast moving bunched FORMAT 8X20HREL FOURIER SERIES Frame Spatial Frequency free space FREQ harmonic indicates instantaneous fields Lorentz Transformations lossless lossy magnetic fields material constants material medium Maximum Radiation Resistance Maxwell's equations obtained permeability constants power radiated Poynting vector PUNCH 12 RADA RADB radiated per unit radiation output RDIF READ 13 relative permeability relative permittivity resistance per unit Rest Frame Spatial ridge line SAFQ solution Space Angular Frequency substitution thesis total loss tangent unit length variation velocity