Matrix: JGD_Homology/ch4-4-b2

Description: Simplicial complexes from Homology from Volkmar Welker.

JGD_Homology/ch4-4-b2 graph
(bipartite graph drawing)


JGD_Homology/ch4-4-b2

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  • Matrix group: JGD_Homology
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  • download as a MATLAB mat-file, file size: 1 KB. Use UFget(2011) or UFget('JGD_Homology/ch4-4-b2') in MATLAB.
  • download in Matrix Market format, file size: 1 KB.
  • download in Rutherford/Boeing format, file size: 1 KB.

    Matrix properties
    number of rows96
    number of columns72
    nonzeros288
    structural full rank?yes
    structural rank72
    # of blocks from dmperm1
    # strongly connected comp.1
    explicit zero entries0
    nonzero pattern symmetry 0%
    numeric value symmetry 0%
    typeinteger
    structurerectangular
    Cholesky candidate?no
    positive definite?no

    authorV. Welker
    editorJ.-G. Dumas
    date2008
    kindcombinatorial problem
    2D/3D problem?no

    Notes:

    Simplicial complexes from Homology from Volkmar Welker.     
    From Jean-Guillaume Dumas' Sparse Integer Matrix Collection,
    http://ljk.imag.fr/membres/Jean-Guillaume.Dumas/simc.html   
                                                                
    http://www.mathematik.uni-marburg.de/~welker/               
                                                                
    Filename in JGD collection: Homology/ch4-4.b2.96x72.sms     
    

    Ordering statistics:result
    nnz(V) for QR, upper bound nnz(L) for LU, with COLAMD1,724
    nnz(R) for QR, upper bound nnz(U) for LU, with COLAMD1,275

    SVD-based statistics:
    norm(A)2.82843
    min(svd(A))1.10083e-16
    cond(A)2.56936e+16
    rank(A)57
    sprank(A)-rank(A)15
    null space dimension15
    full numerical rank?no
    singular value gap8.13849e+14

    singular values (MAT file):click here
    SVD method used:s = svd (full (A)) ;
    status:ok

    JGD_Homology/ch4-4-b2 svd

    For a description of the statistics displayed above, click here.

    Maintained by Tim Davis, last updated 12-Mar-2014.
    Matrix pictures by cspy, a MATLAB function in the CSparse package.
    Matrix graphs by Yifan Hu, AT&T Labs Visualization Group.