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Extra Form
Lecturer Jens Hoppe
Dept. 서강대학교
date Apr 03, 2014

Many aspects of the differential geometry of embedded Riemannian manifolds, including curvature, can be formulated in terms of multi-linear algebraic structures on the space of smooth functions. For matrix analogues of embedded surfaces, one can define discrete curvature, and a noncommutative Gauss-Bonnet theorem. After giving a general introduction to the Poisson-algebraic reformulation for surfaces, as well as explaining a method to associate sequences of finite dimensional matrices to them, I will focus on concrete examples, including noncommutative analogues of minimal surfaces (that play a central role in one of the more promising attempts to unify the known physical interactions)


Atachment
Attachment '1'
  1. Recommendation system and matrix completion: SVD and its applications (학부생을 위한 강연)

  2. Deformation spaces of Kleinian groups and beyond

  3. Idempotents and topologies

  4. Recent progress on the Brascamp-Lieb inequality and applications

  5. Existence of positive solutions for φ-Laplacian systems

  6. Riemann-Hilbert correspondence for irregular holonomic D-modules

  7. Normal form reduction for unconditional well-posedness of canonical dispersive equations

  8. Random conformal geometry of Coulomb gas formalism

  9. Categorification of Donaldson-Thomas invariants

  10. 07Apr
    by 김수현
    in Math Colloquia

    Noncommutative Surfaces

  11. The Shape of Data

  12. Topological aspects in the theory of aperiodic solids and tiling spaces

  13. Subgroups of Mapping Class Groups

  14. Analytic torsion and mirror symmetry

  15. Fefferman's program and Green functions in conformal geometry

  16. 정년퇴임 기념강연: Volume Conjecture

  17. Connes's Embedding Conjecture and its equivalent

  18. Connectedness of a zero-level set as a geometric estimate for parabolic PDEs

  19. Combinatorial Laplacians on Acyclic Complexes

  20. 학부생을 위한 ε 강연회: Mathematics from the theory of entanglement

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