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Letters 15 (10): 615–617.

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      13 Kırık, Ö. and Özdemir, C. (2019). An accurate and effective implementation of physical theory of diffraction to the shooting and bouncing ray method via PREDICS tool. Sigma Journal of Engineering and Natural Sciences 37 (4): 1153–1166.

      14 Knott, E.F. (1993). Radar Cross Section, 2e. Boston, MA: Artech House.

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      17 Mahafza, B.R. (2005). Radar Systems Analysis and Design Using MATLAB, 2e. Boca Raton, FL: Chapman & Hall/CRC.

      18 Özdemir, C., Yılmaz, B., and Kırık, Ö. (2014). pRediCS: a new GO‐PO based ray launching simulator for the calculation of electromagnetic scattering and RCS from electrically large and complex structures. Turkish Journal of Electrical Engineering & Computer Sciences 22: 1255–1269.

      19 Ruck, G.T., Barrick, D.W.S., and Krichbaum, C. (1970). Radar Cross Section Handbook, vol. 1. New York: Plenum Press.

      20  Skolnik, M.I. (1990). Radar Handbook, 2e. New York: McGraw Hill.

      21 Stover, J.C. (1995). Optical Scattering: Measurement and Analysis, 2e. Bellingham, WA: SPIE Press.

      22 Sullivan, R.J. (2000). Microwave Radar Imaging and Advanced Concepts. Norwood, MA: Artech House.

      23 Warnick, K.F. and Chew, W.C. (1999). Convergence of moment‐method solutions of the electric field integral equation for a 2‐D open cavity. Microwave Optical Technology Letters 23 (4): 212–218.

      24 Weinmann, F. (2006). Ray tracing with PO/PTD for RCS modeling of large complex objects. IEEE Transactions on Antennas and Propagation 54 (6): 1797–1806.

      25 Zhong‐Cai, Y., Jia‐Ming, S., and Jia‐Chun, W. (2006). Valeidity of effective‐medium theory in Mie scattering calculation of hollow dielectric sphere. 7th International Symposium on Antennas Propagation & EM Theory (ISAPE '06), Guilin, China (ISAPE ’06), pp. 1–4.

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