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Use of a priori knowledge in moment method solutions
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A uniform geometrical theory of diffraction for an edge in a perfectly conducting surface
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Nov.
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R. G. Kouyoumjian and P. H. Pathak, “A uniform geometrical theory of diffraction for an edge in a perfectly conducting surface,” IEEE Proc., vol. 62. pp. 1448–1461, Nov. 1974.
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An analysis of the radiation from apertures in curved surfaces by the geometrical theory of diffraction
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Nov.
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P. H. Pathak and R. G. Kouyoumjian, “An analysis of the radiation from apertures in curved surfaces by the geometrical theory of diffraction,” IEEE Proc., vol. 62, pp. 1438–1447, Nov. 1974.
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Control of eleciromagnetic scattering by antenna impedance loading
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Ohio State Univ. ElectroScience Laboratory, Dep Elec. Eng., July prepared under Contract F19628-72-C-0203 for Department of the Air Force
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S. C. Lee, “Control of eleciromagnetic scattering by antenna impedance loading,” Ohio State Univ. ElectroScience Laboratory, Dep Elec. Eng., Rep. 3424–2, July 1974; prepared under Contract F19628-72-C-0203 for Department of the Air Force.
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Diffraction by conducting walls of finite thickness
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Ohio State Univ. ElectroScience Laboratory, Dep. Elec. Eng., May prepared under Contract AF 30(602)-3269 for Rome Air Development Center (AD 623077)
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J. S. Yu and R. C. Rudduck, “Diffraction by conducting walls of finite thickness,” Ohio State Univ. ElectroScience Laboratory, Dep. Elec. Eng., Rep. 1767–7, May 1965; prepared under Contract AF 30(602)-3269 for Rome Air Development Center (AD 623077).
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Yu, J.S.1
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Sept.
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——, “On higher-order diffraction concepts applied to a conducting strip,” IEEE Trans. Antennas Propagat., vol. AP-15, pp. 662–668, Sept. 1967.
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