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Showing 1 to 4 of 4 for “"Conductor surface"”.

  1. Modeling of conductor surface roughness effect

    Conductor surface roughness effect refers to the influence of surface roughness on the current flow inside a conductor and the subsequent effect on electromagnetic properties of the conductor. The existence of surface roughness on a conductor disturbs current flow and results in a higher than usual …

    uiuc Repository record for Modeling of conductor surface roughness effect (opens in a new tab)

  2. Characterizing dielectric materials with a feedback-based model

    As signal frequencies continue to increase, conductor surface roughness losses of interconnects are becoming more prominent. There is currently no industry standard for separating the dielectric and conductor losses that appear in PCBs. As part of the thesis work, test vehicles composed of six …

    mit Repository record for Characterizing dielectric materials with a feedback-based model (opens in a new tab)

  3. An investigation into the use of conformal transformations in two-dimensional field theory.

    … of the field strength variations along with conductor surface. In conclusion an outline of two non-analytical methods is given. The study provides a step by step account of the procedure involved in solving, from first principles, the required field properties of particular problems, most …

    rgu Repository record for An investigation into the use of conformal transformations in two-dimensional field theory. (opens in a new tab)

  4. Numerical methods for electromagnetic wave propagation and scattering in complex media

    … scattering from layered one dimensional rough surfaces. To facilitate the solution, the Forward Backward method with Spectral Acceleration is applied. As an example, a dielectric layer on a perfect electric conductor surface is studied. First, the numerical results are compared with the …

    mit Repository record for Numerical methods for electromagnetic wave propagation and scattering in complex media (opens in a new tab)