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    Software

    PyFWI M++ HMM-Maxwell

    PyFWI

    M++

    HMM-Maxwell

    PyFWI illustrates the propagation of seismic waves and the concept of seismic imaging Some of our numerical methods are realized in the parallel finite element system M++ HMM-Maxwell - A Heterogeneous Multiscale Method for Maxwell's equations

     

    LFC-mrLF DLRI SOFI2D

    Multirate Leapfrog-Chebyshev iconic image

    Dynamical low-rank iconic image

    2D Finite-Difference Seismic Wave Simulation

    Leapfrog-Chebyshev and leapfrog-type multirate methods Dynamical low-rank integrators 2D Finite-Difference Seismic Wave Simulation

     

    AIgRT NMHOP ADI Maxwell

    Approximate inversion of generalized Radon transforms

    Numerical methods for highly-oscillatory problems

    Alternating Direction Implicit methdod for Maxwell equations iconic image

    Approximate inversion of generalized Radon transforms Numerical methods for highly-oscillatory problems Alternating Direction Implicit method for Maxwell equations

     

    MLLG QuasiWave WaveDynBC

    Numerical analysis of the Maxwell-Landau-Lifshitz-Gilbert system

    Space discretization and time integration methods for quasilinear wave equations

    Wave equation with dynamic boundary conditions iconic image

    Numerical analysis of the Maxwell-Landau-Lifshitz-Gilbert system Space discretization and time integration methods for quasilinear wave equations Wave equation with dynamic boundary conditions

     

    MonoMeth TiMaxdG openCARP

    Monotonicty-based shape reconstruction for inverse scattering problems

    Time integration for Maxwell's equation

    Cardiac Electrophysiology Simulator

    Monotonicty-based shape reconstruction for inverse scattering problems Time integration for Maxwell's equation Cardiac Electrophysiology Simulator
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    Credits cover image: KIT last change: 2023-09-13
    KIT – The Research University in the Helmholtz Association
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