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An integro-differential equation technique for the time domain analysis of thin-wire structure-the numerical method
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A technique for computing approximate electromagnetic impulse response of conducting bodies
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Ph.D. dissertation, Purdue University, West Lafayette, IN
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84939702665
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The LLL transient electromagnetic measurement facility: A brief description
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Lawrence Livermore Laboratory, Livermore, CA, Rep. UCRL-51933
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R. A. Anderson, J. A. Landt, F. J. Deadrick, and E. K. Miller, “The LLL transient electromagnetic measurement facility: A brief description,” Lawrence Livermore Laboratory, Livermore, CA, Rep. UCRL-51933, Aug. 9, 1974.
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Anderson, R.A.1
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On the singularity expansion method for the solution of electromagnetic interaction problems
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The singularity expansion method
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On the analysis of scattering and antenna problems using the singularity expansion technique
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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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Parametric study of an L-shaped wire using the singularity expansion method
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Problems and solutions associated with Pronys method for processing transient data
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M. L. Van Blaricum and R. Mittra, “Problems and solutions associated with Pronys method for processing transient data,” this issue, pp. 174–182.
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Essai experimental et analytique sur les lois de la dilatabilite de fluides elastiques et sur celles del la force expansive de la vapeur de 1alkool, a differentes temperatures
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'Ecole Polytech. (Paris)
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A technique for extracting the poles and residues of a system directly from its transient response
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M. L. Van Blaricum and R. Mittra, “A technique for extracting the poles and residues of a system directly from its transient response,” IEEE Trans. Antennas Propagat., vol. AP-23, pp. 777–781, Nov. 1975.
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Techniques for extracting the complex resonances of a system directly from its transient response
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Ph.D. dissertation, Electrical Engineering Dep., Univ. of Illinois, Urbana
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M. L. Van Blaricum, “Techniques for extracting the complex resonances of a system directly from its transient response,” Ph.D. dissertation, Electrical Engineering Dep., Univ. of Illinois, Urbana, Dec. 1975.
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Parametric modeling of transient electromagnetic systems
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