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1 Chapter 8Table 8.1a Comparison of computed εreff(f = 0) by several numerical methods a...Table 8.1b The εreff(f = 0) and characteristic impedance of microstrip lines....Table 8.2 Comparison of computed εreff(f = 0) of the shielded microstrip by n...Table 8.3 Normalized dielectric loss of microstrip line in dB/λg.

2 Chapter 9Table 9.1 Conformal transformation using t = Sn(z,k) mapping function.Table 9.2 Transformation using t = sinh(πz/2h).Table 9.3 Transformation using t = z2.Table 9.4 Transformation using x = cosh2(π z/2h).Table 9.5 Transformation using x = cosh2(πz/2h1).Table 9.6 Transformation using t = cosh2[πz/2h].Table 9.7 Transformation using t = sinh(πz/2h).Table 9.8 The values for the coefficient α1 − α9.

3 Chapter 11Table 11.1 Designation of the ports of a 4‐port coupler.

4 Chapter 13Table 13.1 Some commonly used plastic, ceramic, and semiconducting substrates...Table 13.2 Some commonly used semiconducting substrates.

5 Chapter 14Table 14.1 Comparison of the computed value of Z0 of microstrip against exper...Table 14.2 Equivalence of variables.Table 14.3 Comparison of results of εreffe(0) and εreffo(0) for the coupled m...

6 Chapter 15Table 15.1 % Average deviation in CPW dynamic line parameters computed by the...

7 Chapter 18Table 18.1 Resonance frequency compression of fractal planar resonators.Table 18.2 Simulation results of two configurations of microstrip Hilbert lin...

8 Chapter 21Table 21.1 Computed and exp. fp.Table 21.2 Extracted RLCL parameters.Table 21.3 Frequency response of the composite permittivity–permeability func...

Introduction To Modern Planar Transmission Lines

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