scientific article; zbMATH DE number 1271268
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Publication:4238554
DOI<201::AID-MMA32>3.0.CO;2-T 10.1002/(SICI)1099-1476(199902)22:3<201::AID-MMA32>3.0.CO;2-TzbMath0918.35040MaRDI QIDQ4238554
Publication date: 30 March 1999
Title: zbMATH Open Web Interface contents unavailable due to conflicting licenses.
Stability in context of PDEs (35B35) Diffraction, scattering (78A45) Laplace operator, Helmholtz equation (reduced wave equation), Poisson equation (35J05) Variational methods for second-order elliptic equations (35J20)
Related Items (6)
DN-Scattering of a plane wave by wedges ⋮ Dirichlet-Neumann-impedance boundary value problems arising in rectangular wedge diffraction problems ⋮ Wave diffraction by a strip with first and second kind boundary conditions: the real wave number case ⋮ Wave diffraction by a 45 degree wedge sector with Dirichlet and Neumann boundary conditions ⋮ Exterior wedge diffraction problems with Dirichlet, Neumann and impedance boundary conditions ⋮ Wave diffraction by wedges having arbitrary aperture angle
Cites Work
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- Diffraction by a rectangular wedge: Wiener-Hopf-Hankel formulation
- The diffraction problem for a half plane with different face impedances revisited
- A contribution to the quarter-plane problem in diffraction theory
- Wiener-Hopf-Hankel operators for some wedge diffraction problems with mixed boundary conditions
- On the diffraction problem of a half plane with different face impedances
- A factorisation procedure for two by two matrix functions on the circle with two rationally independent entries
- Boundary integral equations for mixed Dirichlet, Neumann and transmission problems
- Diffraction problems with impedance conditions
- Some interior and exterior boundary-value problems for the Helmholtz equation in a quadrant
- Integral equations for the Fourier‐transformed boundary values for the transmission problems for right‐angled wedges and octants
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