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Diffraction limit for circular mask with periodic rectangular apertureHWANG, Hone-Ene; YANG, Gwo-Huei; LIAO, Shu-Hui et al.SPIE proceedings series. 2001, pp 79-88, isbn 0-8194-4341-7Conference Paper

Electromagnetic scattering from anisotropic materials. I: general theoryGRAGLIA, R. D; USLENGHI, P. L. E.IEEE transactions on antennas and propagation. 1984, Vol 32, Num 8, pp 867-869, issn 0018-926XArticle

CALCUL DES COEFFICIENTS COMPLEXES DE TRANSFERT DES CORPS DE FORME COMPLEXELEVSHIN VP; SLOKA VK; CHEKUROV GI et al.1974; TRUDY RADIOTEKH. INST., MOSKVA; S.S.S.R.; DA. 1974; NO 18; PP. 94-105; ABS. ANGL.; BIBL. 7 REF.Article

DIFFUSION SCALAIRE PAR UN ENSEMBLE DE PETITS CORPS DE FORME ARBITRAIRERAMM AG.1974; IZVEST. VYSSH. UCHEBN. ZAVED., RADIOFIZ.; S.S.S.R.; DA. 1974; VOL. 17; NO 7; PP. 1062-1068; ABS. ANGL.; BIBL. 5 REF.Article

CORRELATION TEMPORELLE DES DENSITES DE FLUX D'ENERGIECHAEVSKIJ EV.1973; RADIOTEKH. I ELEKTRON.; S.S.S.R.; DA. 1973; VOL. 18; NO 2; PP. 258-262; BIBL. 10 REF.Serial Issue

DIFFRACTION DES ONDES ELECTROMAGNETIQUES SUR UN CORPS NON UNIFORMEKOKSHENEV VB.1975; RADIOTEKHNIKA, U.S.S.R.; S.S.S.R.; DA. 1975; NO 33; PP. 128-131; BIBL. 3 REF.Article

Film condensation with lateral mass flux about a body of arbitrary shape in a porous mediumLIV, C. Y; ISMAIL, K. A. R; IBINUMA, C. D et al.International communications in heat and mass transfer. 1984, Vol 11, Num 4, pp 377-384, issn 0735-1933Article

Diffraction sur un corps élastique allongé de forme arbitraireTEHTYUKHIN, M. YU.Akustičeskij žurnal. 1989, Vol 35, Num 2, pp 339-342, issn 0320-7919Article

Antenna design exploiting adjoint sensitivity-based geometry evolutionGHASSEMI, Massoud; BAKR, Mohamed; SANGARY, Nagula et al.IET microwaves, antennas & propagation (Print). 2013, Vol 7, Num 4, pp 268-276, issn 1751-8725, 9 p.Article

A state-space formulation of transient electromagnetic scatteringDUDLEY, D. G.IEEE transactions on antennas and propagation. 1985, Vol 33, Num 10, pp 1127-1130, issn 0018-926XArticle

Digital holographic reconstruction of sources with arbitrarily shaped surfacesVERONESI, W. A; MAYNARD, J. D.The Journal of the Acoustical Society of America. 1989, Vol 85, Num 2, pp 588-598, issn 0001-4966Article

Film condensation over a permeable non-isothermal body of arbitrary shape in a porous mediumEBINUMA, C. D; CHANG YU LIU.International communications in heat and mass transfer. 1989, Vol 16, Num 5, pp 743-751, issn 0735-1933Article

NUMERICAL SOLUTION OF STEADY-STATE ELECTROMAGNETIC SCATTERING PROBLEMS USING THE TIME-DEPENDENT MAXWELL'S EQUATIONS.TAFLOVE A; BRODWIN ME.1975; J.E.E.E. TRANS. MICROWAVE THEORY TECH.; U.S.A.; DA. 1975; VOL. 23; NO 8; PP. 623-630; BIBL. 7 REF.Article

RADIATION AND SCATTERING FROM LOADED BODIES OF REVOLUTION = RAYONNEMENT ET DISPERSION A PARTIR DE CORPS CHARGES DE REVOLUTIONHARRINGTON RF; MAUTZ JR.1972; APPL. SCI. RES.; NETHERL.; DA. 1972; VOL. 26; NO 3-4; PP. 209-217; BIBL. 7 REF.Serial Issue

THEORIE DE LA DIFFRACTION PAR DES CORPS HOMOGENESDAUTOV O SH; DYMSKIJ VN.1975; IZVEST. VYSSH. UCHEBN. ZAVED., RADIOFIZ.; S.S.S.R.; DA. 1975; VOL. 18; NO 5; PP. 735-745; ABS. ANGL.; BIBL. 2 REF.Article

PROBLEME DE LA DEFINITION GENERALE ET DES PROPRIETES DE LA MATRICE DE DISPERSIONVAGAPOV AM; KOSENKO GG.1972; RADIOTEKH. I ELEKTRON.; S.S.S.R.; DA. 1972; VOL. 17; NO 7; PP. 1526-1528; BIBL. 2 REF.Serial Issue

The chaining approach for 3-D object envelope constructionLICHIOUI, A; BENNOUNA, A; GUENNOUN, Z et al.International journal of modelling & simulation. 2000, Vol 20, Num 4, pp 329-335, issn 0228-6203Article

A hybrid method for the solution of scattering from inhomogeneous dielectric cylinders of arbitrary shapeJANKOVIC, D; LABELLE, M; CHANG, D. C et al.IEEE transactions on antennas and propagation. 1994, Vol 42, Num 9, pp 1215-1222, issn 0018-926XArticle

Radiation and scattering from electrically small conducting bodies of arbitrary shape above an infinite ground planeARVAS, E; HARRINGTON, R. F; MAUTZ, J. R et al.IEEE transactions on antennas and propagation. 1987, Vol 35, Num 4, pp 378-383, issn 0018-926XArticle

Electromagnetic scattering by arbitrary shaped three-dimensional homogeneous lossy dielectric objectsKORADA UMASHANKAR; TAFLOVE, A; RAO, S. M et al.IEEE transactions on antennas and propagation. 1986, Vol 34, Num 6, pp 758-766, issn 0018-926XArticle

Radiation and scattering from electrically small conducting bodies of arbitrary shapeARVAS, E; HARRINGTON, R. F; MAUTZ, J. R et al.IEEE transactions on antennas and propagation. 1986, Vol 34, Num 1, pp 66-77, issn 0018-926XArticle

A tetrahedral modeling method for electromagnetic scattering by arbitrarily shaped inhomogeneous dielectric bodiesSCHAUBERT, D. H; WILTON, D. R; GLISSON, A. W et al.IEEE transactions on antennas and propagation. 1984, Vol 32, Num 1, pp 77-85, issn 0018-926XArticle

Illustrations of New Physical Bounds on Linearly Polarized AntennasGUSTAFSSON, Mats; SOHL, Christian; KRISTENSSON, Gerhard et al.IEEE transactions on antennas and propagation. 2009, Vol 57, Num 5, pp 1319-1327, issn 0018-926X, 9 p.Article

Solution of the characteristic impedance of an arbitrarity shaped TEM transmission line using complex variable boundary element method (CVBEM)WEN GEYI; LIU XUEGUAN; WU WANCHUN et al.IEE proceedings. Part H. Microwaves, antennas and propagation. 1989, Vol 136, Num 1, pp 73-75, issn 0950-107XArticle

Theoretical factors in modeling polarized light scattering by arbitrary particlesSINGHAM, S. B.Applied optics. 1989, Vol 28, Num 23, pp 5058-5064, issn 0003-6935Article

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