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On the singularity expansion method for the solution of electromagnetic interaction problems
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C. E. Baum, “On the singularity expansion method for the solution of electromagnetic interaction problems,” EMP Note Series, EMP Interaction Note 88, Air Force Weapons Lab., Kirtland Air Force Base, Albuquerque, NM, December 1971
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Numerical results of the singularity expansion method as applied to a plane wave incident on a perfectly conducting sphere
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EMP Note Series, EMP Interaction Note 112, Air Force Weapons Lab., Kirtland Air Force Base, Albuquerque, NM, May
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J. P. Martinez, Z. L. Pine, and F. M. Tesche, “Numerical results of the singularity expansion method as applied to a plane wave incident on a perfectly conducting sphere,” EMP Note Series, EMP Interaction Note 112, Air Force Weapons Lab., Kirtland Air Force Base, Albuquerque, NM, May 1972.
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Natural-mode representation of transient scattering from rotationally symmetric, perfectly conducting bodies and numerical results for a prolate spheroid
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EMP Note Series, EMP Interaction Note 119, Air Force Weapons Lab., Kirtland Air Force Base, Albuquerque, NM, Sept.
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L. Marin, “Natural-mode representation of transient scattering from rotationally symmetric, perfectly conducting bodies and numerical results for a prolate spheroid,” EMP Note Series, EMP Interaction Note 119, Air Force Weapons Lab., Kirtland Air Force Base, Albuquerque, NM, Sept. 1972.
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On the singularity expansion method as applied to electromagnetic scattering from thin-wires
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Scattering by a thin wire parallel to a ground plane using the singularity expansion method
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The singularity expansion method as applied to perpendicular crossed wires
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Closed cylinder singularity expansion descriptors
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EMP Note Series, EMP Interaction Note 430, Air Force Weapons Lab., Kirtland Air Force Base, Albuquerque, NM, July
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J. L. Roberts and L. W. Pearson, “Closed cylinder singularity expansion descriptors,” EMP Note Series, EMP Interaction Note 430, Air Force Weapons Lab., Kirtland Air Force Base, Albuquerque, NM, July 1982.
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Complex pole patterns of the scattering amplitude for conducting spheroids and finite-length cylinders
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B. L. Merchant, P. L. Moser, A. Nagl, and H. Überall, “Complex pole patterns of the scattering amplitude for conducting spheroids and finite-length cylinders,” IEEE Trans. Antennas Propagat., vol. 36, pp. 1769-1777, 1988.
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Recent developments in the use of complex singularities in electromagnetic theory and elastic wave propagation
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P. L. E. Uslenghi, Ed. New York: Springer-Verlag
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H-field, E-field, and combined-field solutions for conducting bodies of revolution
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J. R. Mautz and R. F. Harrington, “H-field, E-field, and combined-field solutions for conducting bodies of revolution,” Arch. Elek. Ubertragung, vol. 32, pp. 157-164, 1978.
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Electromagnetic scattering from a homogeneous material body of revolution
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J. R. Mautz and R. F. Harrington, “Electromagnetic scattering from a homogeneous material body of revolution,” Arch. Elek. Ubertragung, vol. 33, pp. 71-80, 1979.
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0019056827
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Different integral equations for numerical solution of problems involving conducting or dielectric objects and their combination
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Ph.D. dissertation, Univ. Manitoba
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