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Found 139 Documents (Results 1–100)

The problem of finding the kernels in the system of integro-differential Maxwell’s equations. (Russian. English summary) Zbl 1510.45008

Sib. Zh. Ind. Mat. 24, No. 2, 38-61 (2021); translation in J. Appl. Ind. Math. 15, No. 2, 190-211 (2021).
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Darwin approximation for the system of Maxwell’s equations in inhomogeneous conducting media. (English. Russian original) Zbl 1450.35248

Comput. Math. Math. Phys. 60, No. 8, 1361-1374 (2020); translation from Zh. Vychisl. Mat. Mat. Fiz. 60, No. 8, 1408-1421 (2020).
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Analysis and solution method for problems of electromagnetic wave scattering on dielectric and perfectly conducting structures. (English. Russian original) Zbl 1384.78006

Differ. Equ. 53, No. 9, 1165-1173 (2017); translation from Differ. Uravn. 53, No. 9, 1200-1208 (2017).
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Power-based methods for infinite-dimensional systems. (English) Zbl 1401.37100

Camlibel, M. Kanat (ed.) et al., Mathematical control theory I. Nonlinear and hybrid control systems. Cham: Springer (ISBN 978-3-319-20987-6/pbk; 978-3-319-20988-3/ebook). Lecture Notes in Control and Information Sciences 461, 277-301 (2015).
MSC:  37N35 37K05 93B17 93C15 35Q61
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Stability estimates in the problem of cloaking material bodies for Maxwell’s equations. (English. Russian original) Zbl 1326.49031

Comput. Math. Math. Phys. 54, No. 12, 1788-1803 (2014); translation from Zh. Vychisl. Mat. Mat. Fiz. 54, No. 12, 1863-1878 (2014).
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Stability estimates for solutions of boundary control problems for Maxwell’s equations with mixed boundary conditions. (English. Russian summary) Zbl 1457.35076

Dokl. Math. 86, No. 3, 733-737 (2012); translation from Dokl. Akad. Nauk, Ross. Akad. Nauk 447, No. 1, 7-12 (2012).
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Nonlinear waves in integrable and nonintegrable systems. (English) Zbl 1234.35006

Mathematical Modeling and Computation 16. Philadelphia, PA: Society for Industrial and Applied Mathematics (SIAM) (ISBN 978-0-898717-05-1/pbk; 978-0-89871-968-0/ebook). xxvi, 430 p. (2010).
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Weak solutions to a model for crystal growth from the melt in changing magnetic fields. (English) Zbl 1200.35211

Kunisch, Karl (ed.) et al., Optimal control of coupled systems of partial differential equations. Based on the international conference, Oberwolfach, Germany, March 2–8, 2008. Basel: Birkhäuser (ISBN 978-3-7643-8922-2/hbk; 978-3-7643-8923-9/ebook). ISNM. International Series of Numerical Mathematics 158, 123-137 (2009).
MSC:  35Q30 76D05 78A55 80A20 76A15 35D30 35Q61
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On time-harmonic Maxwell’s equations in Lipschitz and multiply-connected domains of \(\mathbb{R}^3\). (English) Zbl 1053.78002

Madaune-Tort, M. (ed.) et al., 7th Zaragoza-Pau conference on applied and statistical mathematics, Jaca (Huesca), September 17–18, 2001. Zaragoza: Univ. de Zaragoza, Seminario Matemático “García de Galdeano” (ISBN 84-96214-04-4/pbk). Monogr. Semin. Mat. “García de Galdeano” 27, 127-134 (2003).
MSC:  78A25 35Q60
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A discontinuous Galerkin method for 3D Maxwell’s equation on non-conforming grids. (English) Zbl 1075.78002

Cohen, Gary C. (ed.) et al., Mathematical and numerical aspects of wave propagation, WAVES 2003. Proceedings of the sixth international conference on mathematical and numerical aspects of wave propagation, Jyväskylä, Finland, 30 June – 4 July 2003. Berlin: Springer (ISBN 3-540-40127-X/hbk). 389-394 (2003).
MSC:  78A25 78M10 65N30
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Integral equations and saddle point formulation for scattering problems. (English) Zbl 1034.35134

Cioranescu, Doina (ed.) et al., Nonlinear partial differential equations and their applications. Collège de France seminar. Vol. XIV. Lectures held at the J. L. Lions seminar on applied mathematics, Paris, France, 1997–1998. Amsterdam: Elsevier (ISBN 0-444-51103-2/hbk). Stud. Math. Appl. 31, 193-212 (2002).
MSC:  35Q60 78A45 31B10
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On a new approach for solving Dirac equations with some potentials and Maxwell’s system in inhomogeneous media. (English) Zbl 1006.30030

Elschner, J. (ed.) et al., Problems and methods in mathematical physics. The Siegfried Prössdorf memorial volume. Proceedings of the 11th TMP conference, Chemnitz, Germany, March 25-28, 1999. Basel: Birkhäuser. Oper. Theory, Adv. Appl. 121, 278-306 (2001).
MSC:  30G35 81Q05 78A25
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Dynamical inverse problem for the Maxwell system: Recovering the velocity in the regular zone (the BC-method). (English. Russian original) Zbl 1012.78010

St. Petersbg. Math. J. 12, No. 2, 279-316 (2001); translation from Algebra Anal. 12, No. 2, 131-187 (2000).
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From the quasi-static to the dynamic Maxwell’s model in micromagnetism. (English) Zbl 0962.78005

Bermúdez, Alfredo (ed.) et al., Mathematical and numerical aspects of wave propagation. 5th international conference, Santiago de Compostela, Spain, July 10-14, 2000. Philadelphia, PA: SIAM, Society for Industrial and Applied Mathematics. 310-314 (2000).
MSC:  78A25 78M25
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A diagonalization method for first-order strictly hyperbolic pseudodifferential systems. Application to the construction of radiation boundary conditions. (English) Zbl 1034.35170

Madaune-Tort, Monique (ed.) et al., Proceedings of the 5th Zaragoza-Pau conference on applied mathematics and statistics, Jaca, Spain, September 15–16, 1997. Zaragoza: Universidad de Zaragoza (ISBN 84-89513-94-5). Publ. Semin. Mat. García de Galdeano, Serie II 20, 85-92 (1999).
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Hadamard’s fundamental solution and conical refraction. (English) Zbl 0990.35003

Chen, Hua (ed.) et al., Partial differential equations and their applications. Proceedings of the conference, Wuhan, China, April 5-9, 1999. Singapore: World Scientific. 260-271 (1999).
MSC:  35A08 35Q60 35L10
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An integral method to compute guided modes optical couplers. (English) Zbl 0924.65115

El Dabaghi, F. (ed.) et al., Approximations and numerical methods for the solution of Maxwell’s equations. Proceedings of the 3rd international conference held at the University of Oxford, GB, April 1995. Oxford: Clarendon Press. Inst. Math. Appl. Conf. Ser., New Ser. 65, 213-226 (1998).
MSC:  65Z05 65N38 78A10 78M25 35Q60 78A40
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