Birs- 18w5090: Spectral Geometry: Theory, Numerical Analysis and Applications

  1. Title:
    Spectral geometry - from the 19th to 21st century in 50 minutes

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  2. Title:
    Maximization of Neumann eigenvalues

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  3. Title:
    Hearing the Shape of the Bunny

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  4. Title:
    Invariant Representations of Shapes and Forms: Self Functional Maps

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  5. Title:
    Spectral Theory for the Transmission Eigenvalue Problem

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  6. Title:
    Discussion and open problem session on numerical aspects of spectral geometry

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  7. Title:
    Filtered subspace iteration for selfadjoint operator eigenvalue problems

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  8. Title:
    Minimal $k$-partition for the $p$-norm of the eigenvalues

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  9. Title:
    A Memory Efficient Spectral Indicator Method

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  10. Title:
    On the spectral properties of tangent vector fields on surfaces with applications to geometry processing

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  11. Title:
    Recent advances in shape optimisation of Laplace eigenvalues

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  12. Title:
    Discussion and open problem session on theoretical aspects of spectral geometry

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  13. Title:
    Computational Applications of Spectral Geometry

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  14. Title:
    Eigenvalue asymptotics for Steklov-type problems on curvilinear polygons

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  15. Title:
    On the growth of eigenfunctions averages

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  16. Title:
    Guaranteed eigenvalue estimation for differential operators and its application in mathematical proof

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  17. Title:
    Spectral Matching - Application to Brain Surfaces

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  18. Title:
    Discussion and open problem session on applications of spectral geometry

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  19. Title:
    Bounds on the Riesz means of mixed Steklov problems

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  20. Title:
    Guaranteed lower bounds for eigenvalues

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