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1
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0019054932
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Coaxial line reflection method for measuring dielectric properties of biological substances at radio and microwave frequencies—A review
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Sept.
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M. A. Stuchly and S. S. Stuchly. “Coaxial line reflection method for measuring dielectric properties of biological substances at radio and microwave frequencies—A review,” IEEE Trans. Instrum. Meas., vol. IM-29, pp. 176–183, Sept. 1980.
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Stuchly, M.A.1
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In vivo probe measurement technique for determining dielectric properties at VHF through microwave frequencies
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Apr.
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E. C. Burdette, F. L. Cain, and J. Seals, “In vivo probe measurement technique for determining dielectric properties at VHF through microwave frequencies,” IEEE Trans. Microwave Theory Tech., vol. MTT-28, pp. 414–427, Apr. 1980.
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Reflection of an open-ended coaxial line and application to nondestructive measurement of materials
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Mar.
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Mosig, J.R.1
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4
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0022689397
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Analysis of an open-ended coaxial line sensor in layered dielectrics
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Mar.
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L. S. Anderson, G. B. Gajda, and S. S. Stuchly, “Analysis of an open-ended coaxial line sensor in layered dielectrics,” IEEE Trans. Instrum. Meas., vol. IM-35, pp. 13–18, Mar. 1986.
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Anderson, L.S.1
Gajda, G.B.2
Stuchly, S.S.3
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0001973529
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Theory of the circular diffraction antenna
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Jan.
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H. Levine and C. H. Papas, “Theory of the circular diffraction antenna,” J. Appl. Phys., vol. 22, no. 1, pp. 29–43, Jan. 1951.
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Levine, H.1
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A quasi-static analysis of open-ended coaxial lines
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Oct.
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D. K. Misra, “A quasi-static analysis of open-ended coaxial lines,” IEEE Trans. Microwave Theory Tech., vol. MTT-35, pp. 925–928, Oct. 1987.
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Misra, D.K.1
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0019999534
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Measurement of radio frequency permittivity of biological tissues with an open-ended coaxial line: Part 1
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Jan.
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T. W. Athey, M. A. Stuchly, and S. S. Stuchly, “Measurement of radio frequency permittivity of biological tissues with an open-ended coaxial line: Part 1,” IEEE Trans. Microwave Theory Tech., vol. MTT-30, pp. 82–86, Jan. 1982.
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Athey, T.W.1
Stuchly, M.A.2
Stuchly, S.S.3
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9
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0015397740
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A numerical solution for the near and far field of an annular ring of magnetic current
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Sept.
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L. L. Tsai, “A numerical solution for the near and far field of an annular ring of magnetic current.” IEEE Trans. Antennas Propag., vol. AP-20, pp. 569–576, Sept. 1972.
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Tsai, L.L.1
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