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The concept of an angular spectrum of plane waves, and its relation to that of polar diagrams and aperture distribution
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Booker, H.G.1
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A method for the exact solution of a class of two-dimensional diffraction problems
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Clemmow, P.C.1
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Radio propagation over a flat earth across a boundary separating two different media
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—, “Radio propagation over a flat earth across a boundary separating two different media,” Phil. Trans. Roy. Soc. London A, vol. 246, pp. 1–55, June 1953.
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The radiation and transmission properties of a pair of semi-infinite parallel plates-I
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Heins, A.E.1
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Propagation in semi-infinite waveguides; Six papers by L. A. Vajnshtegn
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New York Univ. Inst. Math. Sci., Div. Electromagn. Res., New York, NY Jan.
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J. Shmoys, “Propagation in semi-infinite waveguides; Six papers by L. A. Vajnshtegn,” New York Univ. Inst. Math. Sci., Div. Electromagn. Res., New York, NY, Res. Rep. EM-63, Jan. 1954.
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S. W. Lee and R. Mittra, “Diffraction by thick-conducting half-plane and a dielectric-loaded waveguide,” IEEE Trans. Antennas Propagate vol. AP-16, pp. 454–461, July 1967.
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A uniform geometrical theory of diffraction for an edge in a perfectly conducting surface
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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,” Proc. IEEE, vol. 62, pp. 1448–1461, Nov. 1974.
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N. Wang, “Self-consistent GTD formulation for conducting cylinders with arbitrary convex cross section,” IEEE Trans. Antennas Propagat., vol. AP-24, pp. 463–468, July 1976.
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Wang, N.1
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Non-specular RAM
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Univ. Michigan Radiation Lab., Dept. Elec. Eng. and Comput. Sci., Ann Arbor April
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T. B. A. Senior and V. V. Liepa, “Non-specular RAM,” Univ. Michigan Radiation Lab., Dept. Elec. Eng. and Comput. Sci., Ann Arbor, Rep. 014518-1-F, April 1977.
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Senior, T.B.A.1
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