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1
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0028371997
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Dielectric measurements using a rational function model
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Feb.
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J. M. Anderson, C. L. Sibbald, and S. S. Stuchly, “Dielectric measurements using a rational function model,” IEEE Trans. Microwave Theory Tech., vol. 42, pp. 199–204, Feb. 1994.
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IEEE Trans. Microwave Theory Tech.
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Anderson, J.M.1
Sibbald, C.L.2
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0025263532
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Noninvasive electrical characterization of materials at microwave frequencies using an open-ended coaxial line: Test of an improved calibration technique
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Jan.
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D. Misra, M. Chabbra, B. R. Epstein, M. Mirotznik, and K. R. Foster, “Noninvasive electrical characterization of materials at microwave frequencies using an open-ended coaxial line: Test of an improved calibration technique,” IEEE Trans. Microwave Theory Tech., vol. 38, pp. 8–14, Jan. 1990.
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Misra, D.1
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3
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0026821974
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Permittivity measurements using open-ended sensors and reference liquid calibration—An uncertainty analysis
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Feb.
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A. Nyshadham, C. L. Sibbald, and S. S. Stuchly, “Permittivity measurements using open-ended sensors and reference liquid calibration—An uncertainty analysis,” IEEE Trans. Microwave Theory Tech., vol. 40, pp. 305–314, Feb. 1992.
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Nyshadham, A.1
Sibbald, C.L.2
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4
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3643064870
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Ph.D. thesis, University of Ottawa, Ottawa, Canada Oct.
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C. L. Sibbald, “A new technique for modeling open-ended waveguide structures and its application to dielectric spectroscopy,” Ph.D. thesis, University of Ottawa, Ottawa, Canada, Oct. 1991.
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“A new technique for modeling open-ended waveguide structures and its application to dielectric spectroscopy,”
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Sibbald, C.L.1
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5
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0028368793
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A new aperture admittance model for open-ended waveguides
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Feb.
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C. L. Sibbald, S. S. Stuchly, and J. M. Anderson, “A new aperture admittance model for open-ended waveguides,” IEEE Trans. Microwave Theory Tech., vol. 42, pp. 192–198, Feb. 1994.
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(1994)
IEEE Trans. Microwave Theory Tech.
, vol.42
, pp. 192-198
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Sibbald, C.L.1
Stuchly, S.S.2
Anderson, J.M.3
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7
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84894021661
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Numerical solution of initial boundary-value problems involving Maxwell's equations in isotropic media
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May
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Yee, K.S.1
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8
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0027541170
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Application of the FD-TD method to the analysis of circuits described by the two-dimensional vector wave equation
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Feb.
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W. K. Gwarek, T. Morawski, and C. Mroczkowski, “Application of the FD-TD method to the analysis of circuits described by the two-dimensional vector wave equation,” IEEE Trans. Microwave Theory Tech., vol. 41, pp. 311–317, Feb. 1993.
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Gwarek, W.K.1
Morawski, T.2
Mroczkowski, C.3
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9
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0025465122
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Accurate computation of the radiation from simple antennas using the finite-difference time-domain method
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July
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J. G. Maloney, G. S. Smith, and W. R. Scott, Jr., “Accurate computation of the radiation from simple antennas using the finite-difference time-domain method,” IEEE Trans. Antennas Propagat., vol. 38, pp. 1059–1068, July 1990.
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Maloney, J.G.1
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10
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0027910124
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(FD) 2-TD and experimental comparison for a cylindrical cavity loaded with lossy dielectric
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Dec.
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P. J. Hum, M. S. Leong, P. S. Kooi, and T. S. Yeo, “(FD) 2-TD and experimental comparison for a cylindrical cavity loaded with lossy dielectric,” Microwave and Optical Technol. Lett., vol. 6, pp. 869–871, Dec. 1993.
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Hum, P.J.1
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11
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0343453228
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Numerical analysis of the open-ended coaxial line radiating into the lossy and dispersive medium
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Seattle June
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M. Okoniewski, J. Anderson, E. Okoniewska, and S. S. Stuchly, “Numerical analysis of the open-ended coaxial line radiating into the lossy and dispersive medium,” in IEEE Antennas Propagat. Soc. Int. Symp. Dig., Seattle, June 1994, vol. 3, pp. 1438–1441.
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(1994)
IEEE Antennas Propagat. Soc. Int. Symp. Dig.
, vol.3
, pp. 1438-1441
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Okoniewski, M.1
Anderson, J.2
Okoniewska, E.3
Stuchly, S.S.4
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12
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0019632712
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Absorbing boundary conditions for the finite-difference approximation of the time-domain electromagnetic-field equations
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Nov.
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G. Mur, “Absorbing boundary conditions for the finite-difference approximation of the time-domain electromagnetic-field equations,” IEEE Trans. Electromagn. Compat., vol. EMC-22, pp. 377–382, Nov. 1981.
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IEEE Trans. Electromagn. Compat.
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Mur, G.1
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13
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0015064370
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Transient currents induced on a metallic body of revolution by an electromagnetic pulse
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May
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D. E. Merewether, “Transient currents induced on a metallic body of revolution by an electromagnetic pulse,” IEEE Trans. Electromagn. Compat., vol. EMC-13, pp. 41–44, May 1971.
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Merewether, D.E.1
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14
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0028751667
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A technique to compute reflection coefficient in FDTD method
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Seattle June
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M. Okoniewski, J. Anderson, and S. S. Stuchly, “A technique to compute reflection coefficient in FDTD method,” in IEEE Antennas Propagat. Soc. Int. Symp. Dig., Seattle, June 1994, vol. 3, pp. 1446–1449.
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(1994)
IEEE Antennas Propagat. Soc. Int. Symp. Dig.
, vol.3
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Okoniewski, M.1
Anderson, J.2
Stuchly, S.S.3
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