Pages that link to "Item:Q4254137"
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The following pages link to How to draw a picture of an unknown inclusion from boundary measurements. Two mathematical inversion algorithms (Q4254137):
Displaying 34 items.
- Reconstruction of penetrable obstacles in the anisotropic acoustic scattering (Q326415) (← links)
- On the reconstruction of obstacles and of rigid bodies immersed in a viscous incompressible fluid (Q511028) (← links)
- Convergence and regularization for monotonicity-based shape reconstruction in electrical impedance tomography (Q522244) (← links)
- Reconstruction of penetrable inclusions in elastic waves by boundary measurements (Q652490) (← links)
- The regularized monotonicity method: detecting irregular indefinite inclusions (Q667776) (← links)
- Reconstruction of a penetrable obstacle by complex spherical waves (Q984717) (← links)
- Superconductive and insulating inclusions for linear and non-linear conductivity equations (Q1673804) (← links)
- An alternating iterative algorithm for the Cauchy problem in anisotropic elasticity (Q1958354) (← links)
- Uniqueness, stability and global convergence for a discrete inverse elliptic Robin transmission problem (Q1996219) (← links)
- Adaptive mesh techniques based on a posteriori error estimates for an inverse Cauchy problem (Q2008479) (← links)
- The boundary element method for the numerical recovery of a circular inhomogeneity in an elliptic equation (Q2486524) (← links)
- Mimicking relative continuum measurements by electrode data in two-dimensional electrical impedance tomography (Q2662899) (← links)
- Reconstruction of the defect by the enclosure method for inverse problems of the magnetic Schrödinger operator (Q2683804) (← links)
- Reconstructing acoustic obstacles by planar and cylindrical waves (Q2872299) (← links)
- The Enclosure Method for the Anisotropic Maxwell System (Q2947451) (← links)
- Interpolation of missing electrode data in electrical impedance tomography (Q3458218) (← links)
- Comparison of linear and non-linear monotonicity-based shape reconstruction using exact matrix characterizations (Q4563440) (← links)
- Scattering of tidal waves by reefs and spits (Q4786415) (← links)
- The enclosure method for a generalized anisotropic complex conductivity equation (Q4989926) (← links)
- Revisiting the probe and enclosure methods (Q5081805) (← links)
- A shape optimization approach for electrical impedance tomography with point measurements (Q5123701) (← links)
- Reconstruction of piecewise constant layered conductivities in electrical impedance tomography (Q5124552) (← links)
- Monotonicity-Based Reconstruction of Extreme Inclusions in Electrical Impedance Tomography (Q5141939) (← links)
- Inverse problems: seeing the unseen (Q5172853) (← links)
- Complex geometrical optics solutions for anisotropic equations and applications (Q5302615) (← links)
- Identification of a non-convex obstacle for acoustical scattering (Q5432663) (← links)
- Complex geometrical optics solutions for anisotropic equations and applications (Q5443574) (← links)
- Monotonicity Principle in tomography of nonlinear conducting materials <sup>*</sup> (Q5859745) (← links)
- Reconstructing unknown inclusions for the biharmonic equation (Q6085411) (← links)
- A remark on the reconstruction formula of the support function for the magnetic Schrödinger operator (Q6115686) (← links)
- The enclosure method for semilinear elliptic equations with power-type nonlinearities (Q6117900) (← links)
- The <i>p</i>–Laplace “Signature” for Quasilinear Inverse Problems with Large Boundary Data (Q6145648) (← links)
- Extracting discontinuity using the probe and enclosure methods (Q6171609) (← links)
- Integrating the probe and singular sources methods (Q6654621) (← links)