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Faison, J.1
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High Frequency Benchmarks
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Compilations of results for “3D MoM Benchmarks,” and “2D MoM Benchmarks” are available on a limited basis from Dynetics, P.O Drawer B, Huntsville, Alabama
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Compilations of results for “High Frequency Benchmarks,” “3D MoM Benchmarks,” and “2D MoM Benchmarks” are available on a limited basis from Dynetics, P.O Drawer B, Huntsville, Alabama.
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The Radar Cross Section of Ogives, Double-Backed Cones, Double-Rounded Cones and Conespheres
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Radar Cross Section Measurement Data, Electromagnetic Code Consortium Benchmark Targets
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NWC TM 6985, May
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H.T.G.Wang, M.L.Sanders, A.C.Woo, and M.J.Schuh, “Radar Cross Section Measurement Data, Electromagnetic Code Consortium Benchmark Targets,” NWC TM 6985, May 1991.
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Wang, H.T.G.1
Sanders, M.L.2
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Schuh, M.J.4
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84864631041
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Radar Cross Section Measurement Data on Low-Cross-Section Targets.Part 1: Almond, Ogive, and Double Ogive
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NWC TM 7002, October
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H.T.G.Wang, M.L.Sanders, A.C.Woo, and M.J.Schuh, “Radar Cross Section Measurement Data on Low-Cross-Section Targets.Part 1: Almond, Ogive, and Double Ogive,” NWC TM 7002, October 1991.
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Wang, H.T.G.1
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Radar Cross Section Measurement Data on Low-Cross-Section Targets.Part 2: Conesphere and Conesphere with Gap
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NWC TM 7002 October
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H.T.G.Wang, M.L.Sanders, A.C.Woo, and M.J.Schuh, “Radar Cross Section Measurement Data on Low-Cross-Section Targets.Part 2: Conesphere and Conesphere with Gap,” NWC TM 7002, October 1991.
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Wang, H.T.G.1
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Radar Cross Section Measurement Data of a Simple Rectangular Cavity
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NWC TM 7132 December
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A.C.Woo, M.J.Schuh, M.Simon, H.T.G.Wang, and M.L.Sanders, “Radar Cross Section Measurement Data of a Simple Rectangular Cavity,” NWC TM 7132, December 1991.
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Wang, H.T.G.4
Sanders, M.L.5
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84943460500
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Radar Cross Section Measurement Data, Electromagnetic Code Consortium Benchmark Targets, (RAM Coated and Dielectric Target)
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NWC TM 7318 August
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H.T.G.Wang, M.L.Sanders, A.C.Woo, and M.J.Schuh, “Radar Cross Section Measurement Data, Electromagnetic Code Consortium Benchmark Targets, (RAM Coated and Dielectric Target),” NWC TM 7318, August 1992.
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(1992)
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Wang, H.T.G.1
Sanders, M.L.2
Woo, A.C.3
Schuh, M.J.4
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10
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0004204305
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Numerical Modeling of RCS and Antenna Problems
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Lincoln Labs TR 785 December
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S.Lee, D.A.Shnidman, and F.A.Lichauco, “Numerical Modeling of RCS and Antenna Problems,” Lincoln Labs TR 785, December 1987.
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(1987)
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Lee, S.1
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Combined Field Integral Equation Formulation for Inhomogeneous Two- and Three-Dimensional Bodies: The Junction Problem
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J.M.Putnam and L.N.Medgyesi-Mitschang, “Combined Field Integral Equation Formulation for Inhomogeneous Two- and Three-Dimensional Bodies: The Junction Problem,” IEEE Trans.Ant.Prop., AP-39, 5, 1991, p.667.
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Putnam, J.M.1
Medgyesi-Mitschang, L.N.2
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2942549808
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General Approach for Treating Boundary Conditions on Multi-Region Scatterers Using the Method of Moments
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Monterey, CA, March
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J.M.Putnam, “General Approach for Treating Boundary Conditions on Multi-Region Scatterers Using the Method of Moments,” Proceedings of the 7th Annual Review of Progress in Applied Computational Electromagnetics, Monterey, CA, March 1991, pp.304–319.
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Proceedings of the 7th Annual Review of Progress in Applied Computational Electromagnetics
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Putnam, J.M.1
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A Useful Test Body
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September
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A.K.Dominek, H.Shamanski, R.Wood, and R.Barger, “A Useful Test Body,” in Proceedings Antenna Measurement Techniques Association, September 24, 1986.
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Proceedings Antenna Measurement Techniques Association
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Dominek, A.K.1
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14
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The Almond Test Body
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Department of Electrical Engineering, prepared under Grant Number NSG1613, NASA Langley Research Center, March
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A.K.Dominek and H.T.Shamanski, “The Almond Test Body,” Report 721929–9, The Ohio State University Electro-Science Laboratory, Department of Electrical Engineering, prepared under Grant Number NSG1613, NASA Langley Research Center, March 1990.
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Report 721929–9, The Ohio State University Electro-Science Laboratory
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Dominek, A.K.1
Shamanski, H.T.2
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Radar Cross Section Estimation for Simple Shapes
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August
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J.W.Crispin and D.L.Maffett, “Radar Cross Section Estimation for Simple Shapes,” Proc.IEEE, 53, 8, August 1965, pp.833–848.
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