[adsense:responsibe:9545213979]
Sage:rvEr=vector([real(vEr[0]*e^(i*w*t1)),0,0]) Sage:rvHr=vector([0,real(vHr[1]*e^(i*w*t1)),0]) Sage:rvEt=vector([real(vEt[0]*e^(i*w*t1)),0,0]) Sage:rvHt=vector([0,real(vHt[1]*e^(i*w*t1)),0]) Sage:vpi=rvEi.cross_product(rvHi) Sage:vpr=rvEr.cross_product(rvHr) Sage:vpt=rvEt.cross_product(rvHt) Sage:print'Impedancia intrinseca en medio 1=', n2 Sage:print '\n Impedancia intrinseca en medio 2=', n2
Sage:print '\n Coeficiente de reflexion=', cr Sage:print '\n Coeficiente de transmision=', ct Sage:print '\n Razon de onda estacionaria=', srw Sage:print '\n Vector de Pointing de la onda incidente=' Sage:vpi Sage:print '\n Vector de Sage:Pointing de la onda reflejada=' Sage:vpr Sage:print '\n Sage:Vector de Pointing de la onda transmitida=' Sage: vpt Sage:print '\n Relacion entre potencia de onda reflectada e incidente=' Sage:vpr/vpi Sage:print '\n Relacion entre potencia de onda transmitida e incidente=' Sage:vpt/vpi \end{verbatim}
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