Search Results - "Wiedenmann, O."

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    The effect of near-zone preconditioning on electromagnetic integral equations of first and second kind by Wiedenmann, O, Eibert, T. F

    Published in Advances in radio science (04-07-2013)
    “…The linear equation systems which arise from the discretization of surface integral equations are conveniently solved with iterative methods because of the…”
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    Journal Article
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    Local microwave heating of sand molds as a means to overcome design limitations in sand mold casting by Wiedenmann, O, Ramakrishnan, R, Saal, P, Kılıç, E, Siart, U, Eibert, T. F, Volk, W

    Published in Advances in radio science (10-11-2014)
    “…Microwave induced selective heating outmatches conventional mold heating by convective heat transfer in means of energy efficiency and cycle time. Moreover, it…”
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    Journal Article
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    Cavity Resonator Measurement of Dielectric Materials Accounting for Wall Losses and a Filling Hole by Kilic, E., Siart, U., Wiedenmann, O., Faz, U., Ramakrishnan, R., Saal, P., Eibert, T. F.

    “…A cavity resonator technique for the measurement of isotropic homogeneous nonmagnetic dielectric materials is addressed. The materials to be measured are…”
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    Journal Article
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    An investigation of near-zone preconditioning techniques for integral equation solutions by method of moments by Wiedenmann, O., Eibert, T. F.

    “…The iterative solution of linear equation systems resulting from Method of Moments (MoM) discretizations of integral equations is of particular attractiveness…”
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    Conference Proceeding
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    A multi-physics model for microwave heating in metal casting applications embedding a mode stirrer by Wiedenmann, O., Ramakrishnan, R., Kilic, E., Saal, P., Siart, U., Eibert, T. F.

    Published in 2012 The 7th German Microwave Conference (01-03-2012)
    “…Microwave heating can be employed to improve the metal casting process. However, the usage of microwave ovens for casting imposes some specific problems which…”
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    Conference Proceeding
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    Towards the optimization of organic solar cells via controlled morphologies by Wang, Y., Zhao, D.W., Sun, X.W., Scarpa, G., Abdellah, A., Exner, A., Wiedenmann, O., Lugli, P.

    “…We present a combined experimental and theoretical analysis of organic solar cells based on bulk heterojunctions. Our simulation based on a drift-diffusion…”
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    Conference Proceeding
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