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1
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0023289454
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Use of the finite-difference time-domain method in calculating EM absorption in human tissues
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D. M. Sullivan, D. T. Borup, and O.P. Gandhi, “Use of the finite-difference time-domain method in calculating EM absorption in human tissues,” IEEE Trans. Biomed. Eng., vol. BME-34, pp. 148–157, 1987.
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Sullivan, D.M.1
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Use of the finite-difference time-domain method in calculating EM absorption in man models
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RF currents induced in an anatomically based model of a human for plane-wave exposures 2 – 100 MHz
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Electromagnetic deposition in an anatomically based model of man for leakage fields of a parallel-plate dielectric heater
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J. Y. Chen and O. P. Gandhi, “Electromagnetic deposition in an anatomically based model of man for leakage fields of a parallel-plate dielectric heater,” IEEE Trans. Microwave Theory Tech., vol. 37, pp. 174–180, 1989.
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Chen, J.Y.1
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5
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0024478852
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Numerical simulation of annular-phased arrays for anatomically based models using the FDTD method
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C. Q. Wang and O. P. Gandhi, “Numerical simulation of annular-phased arrays for anatomically based models using the FDTD method,” IEEE Trans. Microwave Theory Tech., vol. 37, pp. 118–126, 1989.
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Wang, C.Q.1
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0025722404
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Currents induced in an anatomically based model of a human for exposure to vertically polarized EMP
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J. Y. Chen and O. P. Gandhi, “Currents induced in an anatomically based model of a human for exposure to vertically polarized EMP,” IEEE Trans. Microwave Theory Tech., vol. 39, pp. 31–39, Jan. 1991.
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Treatment of late-time instabilities in finite-difference EMP scattering codes
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A three-dimensional finite-difference solution of the external response of an aircraft to a complex transient EM environment: Part I—The method and its implementation
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K. S. Kunz and K. M. Lee, “A three-dimensional finite-difference solution of the external response of an aircraft to a complex transient EM environment: Part I—The method and its implementation,” IEEE Trans. Electromagn. Compat., vol. EMC-20, pp. 328–332, 1978.
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Scattering by a lossy dielectric circular cylindrical multilayer: Numerical values
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Mie series solution for a sphere
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Absorbing boundary conditions for the finite-difference approximation of the time-domain electromagnetic field equations
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Mur, G.1
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Nonionizing electromagnetic wave effects in biological materials and systems
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Comparison of the FFT conjugate gradient method and the finite-difference time-domain method for the 2-D absorption problem
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D. T. Borup, D. M. Sullivan, and O. P. Gandhi, “Comparison of the FFT conjugate gradient method and the finite-difference time-domain method for the 2-D absorption problem,” IEEE Trans. Microwave Theory Tech., vol. MTT-35, pp. 383–395, 1987.
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Borup, D.T.1
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