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NETWORK THEORY IN ITS RELATION TO THERMODYNAMICS
NETWORK DIAGRAMS FOR PLASMA FiELDS
GENERALIZED NETWORK PARAMETERS IN FIELD THEORY
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amplitude analysis antenna applied approximation arbitrary array assumed axis boundary Brune section capacitance cascade characteristic impedance Circuit Theory coefficients columns complete consider constant corresponding coupling defined denote dipoles distributed electrical networks electron elliptic filter equations equivalent field filter finite Fourier transform frequency given Hankel transform Hence Hurwitz polynomial immittance impedance matrix input Institute of Brooklyn Lemma linear graph loop lossless lumped method Microwave n-port negative resistors Network Synthesis node noisy network nonlinear obtained open-circuited operation optical para-unitary parameters phase plane plasma poles polynomial port-structure ports positive real problem procedure Proof properties rational function RC networks realization receptive field relation satisfy scattering scattering matrix shown in Fig shunt signal solution structure stubs Symposium techniques terminal Theorem thermodynamics tion topological Trans transmission line transmission zeros two-port unit element values variables vector vector calculus voltage wave