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Found 1,255 Documents (Results 1–100)

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Application of boundary perturbations on medical monitoring and imaging techniques. (English) Zbl 1482.78007

Rassias, Themistocles M. (ed.), Nonlinear analysis, differential equations, and applications. Cham: Springer. Springer Optim. Appl. 173, 101-130 (2021).
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Method of orthogonal polynomials for an approximate solution of singular integro-differential equations as applied to two-dimensional diffraction problems. (English. Russian original) Zbl 07373283

Differ. Equ. 57, No. 6, 814-823 (2021); translation from Differ. Uravn. 57, No. 6, 830-839 (2021).
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Analytical inversion of the operator matrix for the problem of diffraction by a cylindrical segment in Sobolev spaces. (English. Russian original) Zbl 1467.45018

Comput. Math. Math. Phys. 61, No. 3, 424-430 (2021); translation from Zh. Vychisl. Mat. Mat. Fiz. 61, No. 3, 450-456 (2021).
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Uniqueness and existence theorems for the problems of electromagnetic-wave scattering by three-dimensional anisotropic bodies in differential and integral formulations. (English. Russian original) Zbl 1462.35379

Comput. Math. Math. Phys. 61, No. 1, 80-89 (2021); translation from Zh. Vychisl. Mat. Mat. Fiz. 61, No. 1, 85-94 (2021).
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Reconstruction of magnetic susceptibility using full magnetic gradient data. (English. Russian original) Zbl 1451.78027

Comput. Math. Math. Phys. 60, No. 6, 1000-1007 (2020); translation from Zh. Vychisl. Mat. Mat. Fiz. 60, No. 6, 1027-1034 (2020).
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Singular modes of the integral scattering operator in anisotropic inhomogeneous media. (English. Russian original) Zbl 1451.78022

Differ. Equ. 56, No. 9, 1212-1218 (2020); translation from Differ. Uravn. 56, No. 9, 1245-1251 (2020).
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Study of the kernels of integral equations in problems of wave diffraction in waveguides and by periodic structures. (English. Russian original) Zbl 1451.78031

Differ. Equ. 56, No. 9, 1167-1180 (2020); translation from Differ. Uravn. 56, No. 9, 1201-1213 (2020).
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Solvability of the integro-differential equation in the problem of wave diffraction on a junction of rectangular waveguides. (English. Russian original) Zbl 1448.35497

Differ. Equ. 56, No. 8, 1041-1049 (2020); translation from Differ. Uravn. 56, No. 8, 1065-1072 (2020).
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Some old and some new results in inverse obstacle scattering. (English) Zbl 1455.35197

Langer, Ulrich (ed.) et al., Maxwell’s equations. Analysis and numerics. Contributions from the workshop on analysis and numerics of acoustic and electromagnetic problems, RICAM, Linz, Austria, October 17–22, 2016. Berlin: De Gruyter. Radon Ser. Comput. Appl. Math. 24, 259-283 (2019).
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Bell polynomials in the Mathematica system and asymptotic solutions of integral equations. (English. Russian original) Zbl 1463.45004

Theor. Math. Phys. 201, No. 3, 1798-1807 (2019); translation from Teor. Mat. Fiz. 201, No. 3, 446-456 (2019).
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Numerical methods for a nonstationary 3D singular integral equation of electrodynamics. (English. Russian original) Zbl 1431.78011

Differ. Equ. 55, No. 9, 1250-1257 (2019); translation from Differ. Uravn. 55, No. 9, 1293-1300 (2019).
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Inverse acoustic and electromagnetic scattering theory. 4th expanded edition. (English) Zbl 1425.35001

Applied Mathematical Sciences 93. Cham: Springer (ISBN 978-3-030-30350-1/hbk; 978-3-030-30351-8/ebook). xvii, 518 p. (2019).
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Boundary integral methods in bioelectromagnetics and biomedical applications of electromagnetic fields. (English) Zbl 1418.78009

Cheng, Alexander H.-D. (ed.) et al., Boundary elements and other mesh reduction methods XXXXI. Selected papers based on the presentations at the 41st international conference (BEM/MRM), New Forest, UK, September 11–13, 2018. Southampton: WIT Press. WIT Trans. Eng. Sci. 122, 85-94 (2019).
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Modelling of grounding system placed into vertically layered soil. (English) Zbl 1418.78007

Cheng, Alexander H.-D. (ed.) et al., Boundary elements and other mesh reduction methods XXXXI. Selected papers based on the presentations at the 41st international conference (BEM/MRM), New Forest, UK, September 11–13, 2018. Southampton: WIT Press. WIT Trans. Eng. Sci. 122, 73-84 (2019).
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BEM analysis of plane wave coupling to three-phase power line. (English) Zbl 1418.78008

Cheng, Alexander H.-D. (ed.) et al., Boundary elements and other mesh reduction methods XXXXI. Selected papers based on the presentations at the 41st international conference (BEM/MRM), New Forest, UK, September 11–13, 2018. Southampton: WIT Press. WIT Trans. Eng. Sci. 122, 63-72 (2019).
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Non-stationary electromagnetics. An integral equations approach. 2nd edition. (English) Zbl 1426.78001

Singapore: Pan Stanford Publishing (ISBN 978-981-4774-95-6/hbk; 978-0-429-65095-6/ebook). xiv, 459 p. (2019).
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Learning light transport the reinforced way. (English) Zbl 1483.68291

Owen, Art B. (ed.) et al., Monte Carlo and quasi-Monte Carlo methods, MCQMC 2016. Proceedings of the 12th international conference on ‘Monte Carlo and quasi-Monte Carlo methods in scientific computing’, Stanford, CA, August 14–19, 2016. Cham: Springer. Springer Proc. Math. Stat. 241, 181-195 (2018).
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Integral equation methods in inverse obstacle scattering with a generalized impedance boundary condition. (English) Zbl 1407.65271

Dick, Josef (ed.) et al., Contemporary computational mathematics – a celebration of the 80th birthday of Ian Sloan. In 2 volumes. Cham: Springer. 721-740 (2018).
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Discretization methods for three-dimensional singular integral equations of electromagnetism. (English. Russian original) Zbl 1407.65299

Differ. Equ. 54, No. 9, 1225-1235 (2018); translation from Differ. Uravn. 54, No. 9, 1251-1261 (2018).
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Method of integral equations for the three-dimensional problem of wave reflection from an irregular surface. (English. Russian original) Zbl 1406.78026

Differ. Equ. 54, No. 9, 1191-1201 (2018); translation from Differ. Uravn. 54, No. 9, 1218-1227 (2018).
MSC:  78M34 78A45 35J05 45B05 45E99 65R20 78M25
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Two-step method for solving inverse problem of diffraction by an inhomogenous body. (English) Zbl 1402.78013

Beilina, L. (ed.) et al., Nonlinear and inverse problems in electromagnetics, PIERS 2017, St. Petersburg, Russia, May 22–25, 2017. Cham: Springer (ISBN 978-3-319-94059-5/hbk; 978-3-319-94060-1/ebook). Springer Proceedings in Mathematics & Statistics 243, 83-92 (2018).
MSC:  78A46 78A45 45B05 45Q05 35J05 78M25 65R20
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A nonlinear multiparameter EV problem. (English) Zbl 1402.78015

Beilina, L. (ed.) et al., Nonlinear and inverse problems in electromagnetics, PIERS 2017, St. Petersburg, Russia, May 22–25, 2017. Cham: Springer (ISBN 978-3-319-94059-5/hbk; 978-3-319-94060-1/ebook). Springer Proceedings in Mathematics & Statistics 243, 55-70 (2018).
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